02:59:57 1964923 ModifyMoleculeLog - ModifyMoleculeLog writes into folder: /opt/uploadtmp/modifymolecule_log/chemmain_143
17:00:02 1996898 AIClient - Request to AI with prompt: 'please check if the given text is spam. answer with yes or no.' and documents [D i era digital saat ini, menemukan sebuah platform hiburan daring yang benar-benar memahami keinginan penggunanya bukanlah hal yang mudah. Di tengah maraknya pilihan yang ada, muncul satu nama yang belakangan ini kerap menjadi bahan perbincangan hangat di kalangan pencinta hiburan virtual, yaitu EROPA99. Bagi siapa saja yang sedang mencari pengalaman baru yang menyegarkan, platform ini menawarkan kombinasi yang sangat menarik antara sistem yang canggih dan pelayanan yang berorientasi pada kepuasan pengguna. Melalui tautan resmi EROPA99, setiap pengunjung akan langsung disambut dengan antarmuka yang sangat modern namun tetap mempertahankan kesederhanaan yang memudahkan mobilitas pengguna. Saya pribadi melihat platform ini berhasil menciptakan standar baru yang membuat siapa pun merasa nyaman untuk menghabiskan waktu luang mereka di sana tanpa harus merasa khawatir dengan sistem yang membingungkan. Ketika pertama kali mengeksplorasi ruang digital ini, hal pertama yang langsung menarik perhatian adalah betapa mulusnya navigasi yang ditawarkan oleh halaman utama mereka. Tidak ada elemen yang terasa berlebihan atau memaksa, semuanya ditempatkan secara presisi untuk memastikan bahwa baik pengguna baru maupun pengguna lama dapat langsung menemukan apa yang mereka cari dalam hitungan detik. Pendekatan ramah pengguna seperti inilah yang sering kali absen dari berbagai platform sejenis di industri ini. Kelebihan utama yang membuat platform ini begitu direkomendasikan adalah komitmen mereka terhadap transparansi dan keadilan sistem. Banyak platform di luar sana yang menjanjikan pengalaman luar biasa namun gagal memberikannya ketika pengguna sudah bergabung secara mendalam. Di sini, segalanya dirancang dengan algoritma yang adil, memberikan kesempatan yang setara bagi setiap orang untuk menikmati hiburan secara maksimal. Rasa aman yang dihadirkan oleh sistem proteksi data mereka juga menjadi nilai tambah yang tidak boleh diabaikan, mengingat privasi digital adalah aset paling berharga bagi siapa pun yang beraktivitas di dunia maya saat ini. Keunggulan Fleksibilitas Akses Tanpa Batas[edit | edit source] Dunia bergerak dengan sangat cepat, dan platform hiburan yang baik harus mampu mengimbangi mobilitas manusia modern. Salah satu alasan mengapa tempat ini menjadi sangat populer adalah kemampuan adaptasinya yang luar biasa pada berbagai perangkat. Baik diakses melalui komputer jinjing di rumah saat akhir pekan, maupun melalui ponsel pintar di sela-sela kesibukan kerja, performa yang dihasilkan tetap stabil dan responsif. Pengalaman visual yang dihadirkan tidak berkurang sedikit pun, dengan transisi antarmuka yang halus serta waktu pemuatan halaman yang sangat singkat. Kecepatan dan stabilitas ini memastikan bahwa momen hiburan Anda tidak akan terganggu oleh kendala teknis yang menjengkelkan. Selain masalah teknis, variasi pilihan hiburan yang tersedia di dalamnya juga patut diacungi jempol. Pengguna tidak akan pernah merasa bosan karena selalu ada pembaruan berkala yang membawa angin segar ke dalam sistem. Kurasi konten yang dilakukan oleh tim pengembang di balik layar menunjukkan bahwa mereka benar-benar mendengarkan masukan dan tren yang sedang berkembang di masyarakat. Pendekatan yang dinamis ini membuat ekosistem digital mereka selalu terasa hidup dan relevan, membedakannya dari platform konvensional yang cenderung stagnan dan monoton setelah beberapa bulan beroperasi. Sistem Pendukung Layanan yang Responsif dan Profesional[edit | edit source] Sebuah layanan digital yang hebat tidak akan lengkap tanpa adanya pilar pendukung yang kuat di sisi pelayanan pelanggan. Platform ini sangat memahami bahwa kenyamanan pengguna adalah kunci utama dari loyalitas jangka panjang. Oleh karena itu, mereka menyediakan sistem bantuan yang siap sedia kapan saja ketika pengguna menghadapi kendala atau sekadar memiliki pertanyaan seputar fitur-fitur yang ada. Respon yang diberikan bukan sekadar jawaban otomatis dari robot, melainkan interaksi yang solutif dan penuh perhatian, mencerminkan profesionalisme tinggi. Hal ini memberikan rasa tenang yang luar biasa, karena Anda tahu ada tim ahli yang selalu siap membantu di balik layar. Kepercayaan adalah komoditas yang mahal di internet, dan platform ini berhasil membangunnya dengan sangat baik melalui konsistensi performa. Setiap transaksi, proses pembaruan data, hingga aktivitas interaktif di dalamnya berjalan dengan akurasi yang tinggi. Komunitas pengguna yang tumbuh di sekitarnya juga memberikan testimoni positif yang organik, sebuah bukti nyata bahwa kualitas yang ditawarkan bukan sekadar jargon pemasaran belaka. Menjadi bagian dari ekosistem digital ini memberikan kepuasan tersendiri bagi mereka yang menghargai efisiensi dan kualitas di atas segalanya. Masa Depan Hiburan Digital yang Menjanjikan[edit | edit source] Melihat perkembangan pesat dan inovasi tiada henti yang terus ditunjukkan, tidak diragukan lagi bahwa platform ini memiliki masa depan yang sangat cerah di industri hiburan daring. Mereka tidak pernah puas dengan pencapaian saat ini, melainkan terus mengeksplorasi teknologi baru untuk meningkatkan kenyamanan para penggunanya. Bagi Anda yang belum pernah mencobanya, mengeksplorasi ruang digital ini bisa menjadi keputusan terbaik untuk mengisi waktu luang dengan cara yang berkualitas dan menyenangkan. Ini adalah tempat di mana teknologi mutakhir bertemu dengan hiburan berkelas, menciptakan sebuah harmoni digital yang sulit ditemukan di tempat lain.]
20:08:39 2002037 OpenAlex -
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20:09:02 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75146-x
20:09:02 2002565 AIClient - Request to AI with prompt: 'Given the following abstract of the publication, is it relevant to any of the following subcategories?
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CO2 conversion
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Semilocal density functionals such as the Perdew-Burke-Ernzerhof (PBE) functional substantially underestimate experimental band gaps. Hybrid functionals address this band gap problem by admixing a fraction of Fock exchange to semilocal exchange. The optimal mixing parameter depends on the specific material and can be identified as the inverse dielectric constant (dielectric-dependent hybrid functional, DDH). Here, we show that dielectric constants obtained using the r
2
SCAN meta-GGA functional are significantly more accurate than dielectric constants obtained using the semilocal PBE functional. We propose the DD-r
2
SCANH functional, a dielectric-dependent hybrid functional based on r
2
SCAN. DD-r
2
SCANH can outperform the standard PBE-based DDH in terms of band gaps and other electronic structure properties. Particularly marked improvements are obtained for narrow-gap semiconductors such as Ge and InAs, where PBE wrongly predicts a metallic phase, but r
2
SCAN opens a band gap.
]
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20:09:03 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76341
20:09:03 2002565 AIClient - Request to AI with prompt: 'Given the following abstract of the publication, is it relevant to any of the following subcategories?
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CO2 conversion
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Piezotronics, which enables mechanical stimuli to actively shape adaptive and seamless interactions between electronic systems and ambient environments, is becoming increasingly valuable in the Internet of Things, human‐machine interfaces, and wearable electronics. Interface‐dominated polarization underpins efficient electromechanical transduction in piezotronic sensors; however, it enforces limited performance tunability and hampers multifunctional applications. Here, we use a macroscale tip‐induced strain gradient to trigger a bulk‐dominated polarization in GaN for realizing a tunable piezotronic effect. Such a mechanism uses interface polar symmetry and shielding of bulk piezo‐charges to drive an electrical switching between high‐ and low‐strain sensitivity states. The tunability is preserved across different indenter sizes, while spherical tips with larger radii further enhance the modulation and tuning range due to strain‐gradient size effects. Our piezotronic device has a wide sensitivity tunability window of 24 403, a large pressure sensitivity of 223.2 meV·MPa
−1
, and ultrahigh strain sensitivity of 1.43 × 10
8
. Moreover, the piezotronic device shows exceptional mechanical durability up to 10 000 loading cycles and preserves electrical tunability even under dynamic operation. This study enriches piezotronic physics by uncovering the cooperative roles of bulk polarization and interface symmetry in transport modulation, and establishes a viable strategy for continuous and wide‐range performance tunability in a single mechanical sensor.
]
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20:09:19 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76096
20:09:19 2002565 AIClient - Request to AI with prompt: 'Given the following abstract of the publication, is it relevant to any of the following subcategories?
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Diamond and graphene are emerging as promising successors to silicon‐based materials for semiconductor applications, particularly when integrated into graphene/diamond heterostructures. However, fabricating high‐quality graphene (0002) atomic layers on diamond (111) with intimate contact—mostly desired for device integration—remains a great challenge. Here, we report a strategy to realize a covalently bonded, graphene (0002)/diamond (111) heterojunction using thermal electron irradiation. Combining structural characterization with theoretical calculations, the formation mechanism and energy band characteristics of this junction structure were clarified, and the microscopic mechanism of hexagonal diamond (lonsdaleite) acting as an intermediate state before its transformation into graphene layers was proposed. The heterostructure exhibits a high piezoresistive response under the present testing configuration, with a gauge factor of −1149. This performance is attributed to two key factors: first, the heterojunction‐induced formation of an electron‐rich layer on the diamond surface; and second, a significant stress‐induced increase in the density of states of carbon C
2p
orbitals within the diamond layer. Leveraging diamond's intrinsic properties, piezoresistive chips based on this structure may offer opportunities for high‐temperature, radiation‐tolerant, wide‐range, and fast‐response sensing applications after further device‐level optimization and validation. These results provide a useful basis for developing diamond‐based semiconductor and sensing devices.
]
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20:09:20 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.13140/rg.2.2.16866.29125
20:09:20 2002565 AIClient - Request to AI with prompt: 'Given the following abstract of the publication, is it relevant to any of the following subcategories?
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Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Particle-Based Modelling and Simulation of Heterogeneous Reactions]
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20:09:20 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.9734/ajfrn/2026/v5i3412
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
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Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [This study was conducted to formulate and evaluate a guava-flavoured non-dairy yoghurt using black rice milk and coconut milk as the primary ingredients. Black rice milk and coconut milk were combined in different proportions, with selected treatments prepared either with or without agar-agar as a stabilising agent. Coconut milk yoghurt was used as the starter culture for fermentation. The developed samples were evaluated for sensory quality, and treatments T5 and T6 were selected for guava pulp incorporation and designated as T5(A) and T6(A). The selected formulations were analysed for physicochemical properties, texture profile, proximate composition, mineral content, microbial quality and product cost. The pH values of the selected yoghurt samples ranged from 3.69 to 3.72, while titratable acidity ranged from 0.70 to 0.71%, indicating successful fermentation. The formulation containing agar-agar, T6(A), showed higher viscosity, firmness and consistency than the formulation without agar-agar. Sensory evaluation showed that T6(A) received the highest overall acceptability score of 8.24 ± 0.66. Nutritional analysis indicated the presence of protein, fat, carbohydrate, dietary fibre, calcium, iron and phenolic compounds. Microbiological evaluation showed the absence of yeast, mould and coliform organisms during refrigerated storage. The findings suggest that black rice milk and coconut milk can be used to prepare an acceptable guava-flavoured, plant-based fermented yoghurt, although further standardisation and validation are required before broader application.]
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20:09:21 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74707-4
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
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Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Fibronectin-induced overactivation of αVβ3-PI3K-PIP3-PDK1-ILK signaling drives aortic disease in Marfan syndrome]
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20:09:21 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76399
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Drug misuse and abuse remain critical global challenges, driving public health and societal burdens through increased morbidity and mortality, impaired driving, interpersonal violence, and escalating healthcare and criminal‐justice expenditures. Drug‐facilitated sexual assault (DFSA) remains a pressing societal concern, and γ‐hydroxybutyrate (GHB) is a representative DFSA agent categorized as a date rape drug. GHB is endogenously derived, exists at low concentrations, and has a short detection window and weak optical features that complicate conventional assays and contribute to missed or delayed detection. These challenges are especially important because GHB can induce rapid clinical presentation that overlaps with alcohol or other sedatives, making timely identification critical for acute management and safeguarding decisions. This necessitates reliable detection of exogenous GHB in minimally invasive samples. This study presents a graphene‐based electrical biosensor for rapid detection of GHB with high sensitivity and selectivity, achieving a limit of detection (LOD) of 100 f
m
for standard GHB solutions and a correlated LOD of 100 f
m
in artificial urine matrices. The platform enables rapid, on‐site detection with concentration‐dependent electrical responses across a wide dynamic range suitable for clinically and forensically relevant GHB levels, with broad implications for diagnostics, forensic analysis, and public health strategies to reduce drug‐related harm.
]
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20:09:22 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75038-0
20:09:22 2002565 AIClient - Request to AI with prompt: 'Given the following abstract of the publication, is it relevant to any of the following subcategories?
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Untargeted mass spectrometry can detect thousands of molecules at once, potentially offering powerful insights into complex samples. However, the increasing scale of experimental datasets and spectral libraries limits our ability to extract and annotate structural information to allow for interpretation. Here, we present the software tool MS2LDA 2.0 that helps to address this gap by identifying recurring fragmentation patterns (Mass2Motifs) that can reflect shared chemical substructures. We introduce automated annotation support through Mass2Motif Annotation Guidance (MAG) that provides suggestions to interpret detected patterns. Our unsupervised pattern mining tool enables the study of much larger datasets with up to 14 times faster analysis than its predecessor. We demonstrate the utility of MS2LDA 2.0 and MAG in applications such as detecting pesticide-related substructures and exploring unknown fungal compounds. Together, these advances make it easier to uncover meaningful chemical patterns in complex data.]
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20:09:22 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75130-5
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Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Critical slowing down of semiarid vegetation resilience is amplified by intensifying heatwaves]
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20:09:23 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75077-7
20:09:23 2002565 AIClient - Request to AI with prompt: 'Given the following abstract of the publication, is it relevant to any of the following subcategories?
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Dense stabilized emulsions are mixtures of immiscible fluids where the high-volume fraction droplet dispersed phase is stabilized against coalescence by steric interactions. The production of emulsions-a key process in food, cosmetics and chemical industries-involves high-shear flows, elastic and steric interactions, and proceeds thanks to coalescence and breakup of droplets and interfaces. The complex interplay between all these interactions is key in determining both small-scale droplet morphology as well as large-scale emulsion rheology. It is well known that at a critical volume fraction,
ϕ
c
, the emulsion loses stability, undergoing an extremely rapid process where the fluid components in the emulsion exchange roles. This process, called catastrophic phase inversion, which resembles in several respects a dynamical phase transition, has remained widely elusive from an experimental and theoretical point of view. In this work, we present state-of-the-art experimental and numerical data to support a dynamical-system framework capable of precisely highlighting the dynamics occurring in the system as it approaches the catastrophic phase inversion. Our study clearly highlights that at high volume fractions, the droplet population starts to fluctuate wildly, leading to dramatic changes in the emulsion’s rheology and stability. Additionally, we show that at approaching the critical volume fractions, the dynamics can be simplified as being controlled by the evolution of a correlation length represented, in our systems, by the size of the largest droplet. This dynamics shares a close connection with non-reciprocal phase transitions where two different physical mechanisms, coalescences and breakups, can get out of balance leading to large non-symmetric periodic excursions in phase space. We clarify the phenomenology observed and quantitatively explain the essential aspects of the highly complex dynamics of flowing stabilized emulsions undergoing catastrophic phase inversion. More generally, our approach sets the basis for the definition and modeling of a vast number of dynamical phase transitions in hydrodynamic systems out-of-equilibrium where the flow, or other advection mechanisms, can enhance both aggregation and breakup of aggregates.
]
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20:09:25 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1117/12.3105155
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Multilayer crystal configuration of the Bragg-reflection x-ray spectropolarimeter ParaDAXAS for an extended energy range]
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20:09:26 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.13140/rg.2.2.29475.41761
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Magnetic Iron Oxide (Fe₃O₄) Nanocatalysts for Biomass-Derived Platform Chemical Synthesis: Green Chemistry Principles, Recyclability, and Circular Economy Integration]
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20:09:26 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76389
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Programmed death‐ligand 1 (PD‐L1) blockade improves outcomes in patients with various malignancies; however, biomarkers for monitoring treatment responses are lacking. This study presents a surface‐enhanced Raman scattering (SERS)‐based platform for the ultrasensitive detection of PD‐L1 on circulating epithelial cell adhesion molecule‐positive (EpCAM
+
) extracellular vesicles (EVs). The platform is validated using interferon‐gamma‐treated epithelial tumor cell line‐derived EVs. The platform is further applied to paired pre‐ and post‐treatment plasma samples from patients with non‐small‐cell lung cancer (
n
= 140) and head and neck squamous cell carcinoma (
n
= 73) receiving anti‐PD‐(L)1 immunotherapy. Dynamic changes in PD‐L1 expression on EV are shown to correlate with clinical outcomes. A post‐treatment decrease in PD‐L1 expression on EpCAM
+
EVs (EpCAM
+
EV PD‐L1) is associated with improved 5‐year progression‐free and overall survival. These results establish EpCAM
+
EV PD‐L1 as a dynamic, non‐invasive biomarker for monitoring immunotherapy responses and demonstrate the utility of SERS‐based profiling in predicting long‐term responses to immune checkpoint blockade.
]
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20:09:26 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.202600039
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CO2 conversion
CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Thrombotic vascular diseases contribute to significant global mortality, yet current therapeutic strategies face persistent challenges, including bleeding risks, suboptimal efficiency, and procedural complexity. Here, we report a micro‐explosive thermochemical thrombolysis (METCT) therapy via proximal injection of liquid alkali metal (LAM) encapsulated in dimethyl silicone (LAM@oil), which enables prompt, efficient, and safe vascular recanalization within an ultrafast timeframe (< 90 s). This LAM@oil system effectively disrupts thrombus tissue through a synergistic triple‐action mechanism: mechanical micro‐explosions forces, alkaline ablation due to highly localized exothermic chemical reactions, and thermal thrombolysis mediated by elevated temperature. Upon thrombolysis completion, the non‐toxic reaction byproducts (sodium and potassium ions) exhibit physiologically biocompatible and metabolizable effects. Critically, the LAM@oil demonstrates significantly higher thrombolytic efficacy compared to clinically available thrombolytic drugs (residual thrombus area percent 10.87% ± 7.16% for LAM@oil vs. 80.86% ± 13.32% for urokinase), with no associated bleeding risks. This strategy opens a byproduct‐green, cost‐effective, and high‐efficiency alternative to conventional thrombolytics, holding big potential for clinical translation in acute thrombosis management.]
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20:09:27 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1117/12.3101737
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CO2 conversion
CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Spectroscopic performance of the electrical functional models for the eXTP SFA-T detectors]
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20:09:28 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s42003-026-10621-1
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [NuSAP1 promotes spindle assembly in Trypanosoma brucei by bundling spindle microtubules]
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20:09:29 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74934-9
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CO2 conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [The burden of antimicrobial-resistant bacterial infections: a causal perspective]
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20:09:29 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76211
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CO2 conversion
CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
The hepatic lobule, the basic unit of the liver, spatially organizes diverse cell types to coordinate metabolism, detoxification, and immune regulation. Yet efficiently reconstructing its hierarchical and vascular microarchitecture in vitro remains a central challenge. Here, we report a vascularized liver‐on‐a‐microsphere (VLOM) system that recreates lobule‐like structure and function within individual microscale hydrogel particles. Using a microfluidic‐aerosol fabrication strategy, compartmentalized microspheres with rough‐textured surface and built‐in spatial addressing markers were produced to spatially localize multiple liver cell types and support endothelial barrier formation. The VLOMs exhibit uniform morphology, structural stability, and high viability, accompanied by enhanced hepatic performance, including elevated albumin and urea synthesis and upregulated CYP2B6 and CYP3A4 expression. Metabolomic profiling reveals activation of the alanine‐glucose metabolic cycle, which strengthens biosynthetic and detoxification capacities. Supplementation with alanine or glucose further restores hepatic function and mitigates rifampicin‐induced hepatotoxicity, underscoring the protective role of this cycle in maintaining metabolic resilience. This scalable, vascularized microsphere system unites microengineering precision and physiological fidelity, offering a high‐throughput route to model liver metabolism and evaluate drug responses.]
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20:09:30 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76435
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
This study proposes a smart fluid hydraulic system based on magnetorheological fluid (MRF) valve control for flexible gripping. An MRF micro‐servo valve (MRF‐MSV) that integrates an excitation coil and micro‐textured damping channels has been designed. Through experiments and simulations based on the Bingham model, the hydraulic resistance characteristics of the valve under different currents are analyzed, which confirms the enhancing effect of the micro‐textured channels on hydraulic resistance. Furthermore, experiments demonstrate that at an excitation current of 3 A, the valve body's resistance pressure reaches 1191.4 kPa with a micro‐textured height of 0.2 mm, representing an 81.9% increase compared to the valve without micro‐textured channels (655 kPa). Integrating the MRF‐MSV with a soft actuator enables dynamic control of bending and grasping motions, with a maximum bending angle of 180°. Then, an MRF variable‐stiffness soft actuator (MRF‐VSSA) is developed. When a current of 1.2 A is applied to the variable‐stiffness module, the fingertip force increases from 2.69 to 5.05 N, showing an 87.7% increase. Finally, an MRF‐based smart fluid‐hydraulic system is constructed, and a magnetically driven manipulator is developed. Experiments indicate that this manipulator can execute complex hand movements and stably grasp objects of various shapes without causing damage.]
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20:09:30 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75074-w
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CO2 conversion
CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Tumors reprogram lipid metabolism in distant tissues to support their growth. In adult
Drosophila
, gut tumors secrete the PDGF/VEGF-like factor Pvf1, which activates the TORC1-Hnf4 pathway in hepatocyte-like oenocytes. This drives production of very long-chain fatty acids and wax esters essential for tracheal growth around the tumor. Blocking Hnf4 or the elongase mElo in oenocytes strongly suppresses tracheogenesis, tumor progression, and cachexia-like organ wasting, while extending host lifespan. The same pathway also controls tracheal development in healthy flies. Lipoprotein receptor
LpR2
depletion in oenocytes rescues the observed tumor induced tracheal tracheal remodeling. This tumor-host interaction is conserved: VEGF-A induces lipid metabolism genes in human hepatocytes, and lung tumor-bearing mice show elevated hepatic
Hnf4
and
Elovl7
. Altogether, this study reveals a non-autonomous role of the TORC1-Hnf4 axis in lipid-mediated tumor progression and identifies potential therapeutic targets for cancer-associated metabolic dysfunction.
]
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20:09:31 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75083-9
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Inhibition of PARPs is a key strategy to treat tumours with defects in homologous recombination (HR), including those with mutations in the tumour suppressor gene
BRCA2
. PARP inhibitors generate replication stress, creating a dependence on HR to repair the resulting DNA damage. However, the DNA lesions generated upon PARP inhibition that impede replication fork progression and trigger a requirement for BRCA2 in cell survival are poorly defined. Here, we demonstrate that elevated levels of G-quadruplex (G4) DNA structures is a determinant of genome instability and PARP inhibitor toxicity, while suppressing these structures results in PARP inhibitor resistance. The HUWE1-associated stress response protein HAPSTR1 and BRCA2 function in parallel pathways to PARP1/PARP2 to suppress G4 levels during S-phase. Mechanistically, PARP1/PARP2 disruption in HAPSTR1 or BRCA2-deficient cells leads to G4-replication conflicts, ssDNA gaps, replication-associated DNA damage and genome instability. HAPSTR1 turnover is regulated through HUWE1-dependent proteasome degradation. As such, HUWE1 disruption results in elevated HAPSTR1 and suppression of elevated G4 levels in BRCA2-deficient cells, resulting in PARP inhibitor resistance. Together, these data identify G4 structures as a determinant of PARP inhibitor toxicity, while the HAPSTR1/HUWE1 axis is essential to suppress these structures and confer PARP inhibitor resistance.
]
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20:09:32 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75113-6
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
The durability and cost of iridium-based anodes remain key challenges for high-current density operation of proton exchange membrane water electrolyzers. Here, we report a dual-interface stabilization strategy based on atomic layer deposition of TiO
2
onto IrO
2
catalysts. The resulting anodes sustain operation at 3.0 A cm
−2
for 2600 h with near-zero voltage degradation at an iridium loading of 0.4 mg cm
−2
, whereas bare IrO
2
exhibits continuous voltage decay over 1000 h at a rate of 31.5 mV kh
−1
. Combined experimental characterization and theoretical calculations reveal that interfacial Ti-O-Ir coupling suppresses Ir over-oxidation and dissolution, while the TiO
2
-coated surface strengthens ionomer-catalyst interactions and preserves mass-transport pathways during prolonged operation. This strategy is fully compatible with roll-to-roll manufacturing, enabling industrially scalable implementation. This interfacial engineering approach offers a generalizable design principle for extending electrolyzer lifetime and reducing precious-metal loading across diverse electrochemical energy conversion technologies.
]
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20:09:32 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76448
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Correction to “Bioinspired Polyacrylic Acid‐Based Dressing: Wet Adhesive, Self‐Healing, and Multi‐Biofunctional Coacervate Hydrogel Accelerates Wound Healing”]
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20:09:33 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s42003-026-10484-6
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CO2 conversion
CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Phenotypic and neuropeptidergic control of appetitive behavior in honey bees (Apis mellifera)]
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20:09:33 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s44296-026-00109-8
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Machine learning (ML) can support the development of lower-carbon concrete through improved cement production, mix design, supplementary cementitious materials and alternative binders, and recycled aggregate concrete. This review synthesizes these applications and shows that ML can strengthen process control and multi-objective optimization. Current limitations arise mainly from data heterogeneity, limited generalizability, and weak interpretability. Closer integration with physical understanding is needed for reliable low-carbon decision-making.]
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20:09:34 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75149-8
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CO2 conversion
CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Unlocking stable intermediate states in SrFeO3-δ through voltage control of oxygen non-stoichiometry]
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20:09:34 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76436
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Development of durable and active noble‐metal‐free catalysts for the alkaline oxygen evolution reaction (OER) remains a critical challenge. Conventional electrocatalysts typically suffer from an intrinsic trade‐off between activity and stability. Here, we report an in situ electrochemically reconstructed CuNi nanotube with a crystalline–amorphous heterostructure, featuring a conductive crystalline alloy core encapsulated by an amorphous nickel oxide shell. The metallic core provides a high‐conductivity framework for rapid charge transfer and maintains structural integrity, while the in situ derived amorphous phase maximizes the density of accessible active sites and passivates the metallic core against oxidative corrosion. The optimized catalyst achieves an overpotential of 229 mV at 10 mA cm
−2
and operates stably for over 1000 h in alkaline OER, reconciling the catalytic activity and stability. Mechanistically, operando Raman spectroscopy and electron energy loss spectroscopy elucidate the dynamic valence modulation and surface phase evolution as the origin of its performance. Overall, this work establishes controlled electrochemical reconstruction as a transformative paradigm for unifying catalytic activity and stability, providing a design principle for advanced, earth‐abundant OER electrocatalysts.
]
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20:09:35 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75265-5
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Closed-loop readout of anterior insula high-gamma activity steers value-based decisions]
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20:09:35 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76445
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Micro‐silicon (m‐Si) is a promising next‐generation anode material for lithium‐ion batteries (LIBs), but its practical use is limited by severe volume expansion, particle pulverization, and unstable solid electrolyte interphase (SEI) formation. Recently, solidelectrolyte (SE)‐free m‐Si electrodes in all‐solid‐state batteries (ASSBs) have attracted attention as a strategy to reduce direct contact between SEs and electrode components. This architecture can suppress parasitic interfacial reactions while maximizing the active Si content. However, whether SE‐free m‐Si electrodes can deliver sufficient electrochemical performance and interfacial stability to replace conventional LIB systems remains unclear. Here, we systematically compare the degradation behavior of m‐Si electrodes in liquid‐ and solid‐electrolyte systems by correlating electrochemical performance with interface‐level structural evolution. The results reveal distinct degradation pathways depending on the electrolyte environment. In LIBs, m‐Si undergoes continuous pulverization accompanied by repeated SEI rupture and unstable SEI growth at the particle–electrolyte interface. In contrast, ASSBs promote a film‐like transformation of m‐Si with limited interfacial reactivity, improved structural integrity, and enhanced electrochemical stability. These findings clarify the critical role of electrolyte type in governing Si anode degradation and provide design guidelines for high‐energy‐density Si‐based batteries.]
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20:09:36 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75066-w
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CO conversion
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Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Newly-diagnosed glioblastoma (nGBM) remains a significant unmet need with limited therapeutic options. Here, we present the results of a single-arm, open-label phase 1b trial on neoantigen-pulsed autologous dendritic cells (ZSNeo-DC) as an adjuvant treatment for nGBM. The primary endpoint was safety, as assessed by the incidence and severity of adverse events (AEs). Eleven patients with nGBM received intradermal administration of ZSNeo-DC following surgery and standard radio-chemotherapy. Treatment was well tolerated, with AEs predominantly grade 1 or 2; only two grade-1/2 febrile AEs were recorded as treatment-related. Secondary endpoint analysis showed that median progression-free survival (PFS) was 16.2 months, median overall survival (OS) was not reached, and 12-month OS rate was 100% from surgery. A range of 1.9- to 284.7-fold (median: 7.2-fold) and 0.7- to 507.0-fold (median: 10.3-fold) increase of peripheral neoantigen-specific immune response (NSIR) was observed respectively after the 3
rd
and 5
th
vaccination. Following vaccination, both the activated-to-exhausted ratio of effector/central memory T cells and the clonal evenness of the T cell receptor repertoire increased significantly in peripheral blood; these parameters positively correlated with NSIR and PFS. Overall, ZSNeo-DC exhibits a favorable safety profile and preliminary efficacy signals in nGBM, supporting phase 2 evaluation in expanded cohorts. Trial number: NCT04968366.
]
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20:09:36 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1117/12.3112726
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Screening and prediction of CO2/CH4 adsorption separation by metal organic frameworks]
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20:09:37 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75234-y
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Viral modulation of sulfur-oxidizing bacteria drives organic carbon sink formation during primary succession in deglaciating ecosystems]
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20:09:37 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74739-w
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
The evolution of cranial morphology in the genus
Homo
is marked by increasing encephalization and reduced facial robusticity through time. These changes are often assumed to be the product of directional natural selection for larger brain size, presumed to be associated with greater cognitive abilities, and for decreasing facial size to lower energetic costs, as masticatory demands were reduced through food processing and tool use. Here, we test this hypothesis by exploring the goodness-of-fit of the predictions of six evolutionary processes to the observed cranial morphological variation in
Homo
. We analyzed comprehensive neurocranial and facial 3D landmark coordinate datasets, grouped into eight Operational Taxonomic Units starting with early
Homo
and representing two lineages,
Homo sapiens
and
Homo neanderthalensis
. Our neurocranial analysis found strongest support for models of neutral evolution (Unbiased Random Walk) and stasis across both lineages. Similarly, the face shows strongest support for models of stasis, strict stasis, and neutral evolution (Unbiased Random Walk). Our findings suggest a limited role for gradual directional selection and underscore the importance of stabilizing selection and constraints in our lineage’s evolution, highlighting the importance of environmental constraints and possibly cultural behaviors as core drivers of human evolution.
]
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20:09:38 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1021/acscentsci.6c00422
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Multimodal FRACTAL-MSI and Image Fusion Improves Detection and Resolution of Biomolecule Imaging]
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20:09:38 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75400-2
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Proton shuttling at electrochemical interfaces under alkaline hydrogen evolution]
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20:09:39 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74984-z
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Energetic electrons in Earth’s inner radiation belt pose significant hazards to spacecraft systems, with the strongest radiation in low-Earth orbit (LEO) mostly confined to the South Atlantic Anomaly (SAA) region. Once considered stable, the inner belt is now understood to exhibit significant variability. Using data from the low-Earth-orbit Macau Science Satellite-1 mission, we report transient distortions of the SAA radiation environments, observationally characterized by enhanced fluxes of energetic electrons outside the traditional SAA radiation region, appearing either attached to or detached from its boundary. We show that these distortions can be explained by large-scale electric-field perturbations that adiabatically alter the electron mirror heights, which can be further modulated by ultra-low-frequency waves. Test-particle simulations successfully reproduce the observational features and provide crucial constraints on properties of the associated electric fields. These findings reveal a distinct manifestation of inner-belt variability, extending the electron radiation risks beyond the expected boundaries of the SAA radiation environments.]
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20:09:40 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75105-6
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Robotic prostheses are the primary replacement for upper-limb amputees’ lost hands. Although various neuroprosthetic hands have been developed, featuring both rigid and soft mechanisms, they typically offer grasping-oriented functionality with fewer degrees of freedom (DOFs, ≤6). Herein, we report a dexterous soft neuroprosthetic hand with 11 active DOFs that restores common grasping and fine manipulation, validated by four amputee subjects (aged 38–70 years, male and female). The neuroprosthetic hand integrates soft fingers with thumb-palm articulations for dexterity and adaptivity via a 2-channel myoelectric interface with amplitude-speed decoding, enabling amputees to outperform current prostheses in standardized tests and maintain control robustness. Furthermore, the neuroprosthetic hand improves amputees’ participation in daily activities and interactions, such as hair braiding, pill taking, scissor manipulation, car steering, and continuous bulb screwing, while reducing compensatory body movements. These results demonstrate that the high-dexterity soft-robotic hand enhances both prosthesis versatility and compliant interaction.]
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20:09:40 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74200-y
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Flexible pressure sensors are key components of Internet of Things systems for monitoring environmental and physiological signals, yet simultaneously achieving a high sensitivity, a fast response time, and a high mechanical durability remains challenging owing to the lack of sophisticated structural designs that balance sensing performance and robustness. Here, we demonstrate a multiscale artificial spider web (MASW) fabricated via copper-mesh-assisted electrospinning of biodegradable polylactic acid, forming a nanofiber network that efficiently transmits stress while enhancing mechanical stability. The resulting pressure sensor simultaneously shows a high sensitivity of 39.85 [kPa]
−1
, a fast response of 42 ms and high durability over 6000 loading cycles, enabling reliable and versatile neural-network-assisted real-time monitoring of multiple physiological signals, including pulse, breathing, and vocalization. Furthermore, leveraging precise joint movement signal acquisition, a human-machine interaction system was developed with potential applications in fine motor rehabilitation for Parkinson’s disease, suggesting strong promise for sustainable healthcare and IoT systems.
]
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20:09:42 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s42003-026-10609-x
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Single-cell RNA sequencing (scRNA-seq) is revolutionizing neuroimmune research, yet a critical bottleneck persists: the dissociation process introduces pervasive stress-altered transcription (SAT) that obscures genuine in vivo biology. Here, we present a comprehensive two-pronged strategy to eliminate these artifacts in key neuroimmune niches. First, we establish a benchmark by applying an optimized experimental protocol that minimizes dissociation stress. Comparative analysis against conventional methods allows us to map the landscape of SAT artifacts across cell types in the brain and skull bone marrow (SBM), defining distinct, tissue-specific signatures. We then employ random forest-based approach to refine these signatures into powerful SAT gene panels, creating a computational tool for the sensitive detection and removal of artifactual signals. Our experimental approach achieves a ~ 95% reduction in these artifacts, while computational approach alone also has a 60-64% reduction that enables the retrospective correction of published data. This work provides a robust framework to ensure single-cell transcriptomics faithfully captures biological reality, empowering more precise discoveries in neuroimmunology.]
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20:09:42 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76401
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CO2 conversion
CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Rheumatoid arthritis (RA) involves persistent synovial inflammation and progressive destruction of cartilage and bone, where aberrantly activated fibroblast‐like synoviocytes (FLSs) play a central role. Although 5‐methylcytosine (m
5
C) modification is implicated in many diseases, its role in RA remains unclear. Here, we observed upregulated expression of the m
5
C methyltransferase NOP2/Sun domain family member 2 (NSUN2) in both synovial tissues (STs) and FLSs from RA patients. Functionally, NSUN2 knockdown suppressed migration and invasion of RA FLSs, whereas NSUN2 overexpression exerted opposing effects. Mechanistically, NSUN2 mediated m
5
C modification of isoprenylcysteine carboxyl methyltransferase (ICMT) mRNA and enhanced its stability. Furthermore, we identified salvianolic acid A (SAA) as an NSUN2 inhibitor, which phenocopied the effects of NSUN2 knockdown on RA FLSs. Given the well‐recognized ROS‐scavenging capacity of cerium oxide nanoparticles, we constructed Ce/SAA nanoparticles (Ce/SAA NPs) via coordination self‐assembly to enable synergistic therapy for RA. Notably, Ce/SAA NPs ameliorated arthritis in collagen‐induced arthritis (CIA) mice, and intra‐articular NSUN2‐siRNA attenuated disease progression in CIA rats. These results highlight NSUN2‑mediated m
5
C modification in RA pathogenesis and suggest NSUN2 as a therapeutic target.
]
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20:09:42 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76379
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Brain gliomas’ variable growth patterns and locations hinder complete surgical removal, while existing clinical imaging/histological methods fail to guide intraoperative resection. To address this, we developed blue‐green dual‐color probes (perovskite quantum dots conjugated to antibodies) targeting glioma cells and IDH1‐mutant simultaneously. These enable rapid intraoperative in vitro pathological diagnosis, helping surgeons devise resection strategies for personalized precise treatment. Tested on 56 clinical frozen sections, the combined detection using dual probes can be completed within 30 min with 91% accuracy: the glioma‐targeting probe identifies tumor boundaries, while the IDH1‐targeting one distinguishes subtypes for optimized margin delineation. We established a personalized resection strategy guided by these results; the dual‐target probes show great potential to assist neurosurgeons in precise glioma resection.]
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20:09:43 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74394-1
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CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Breaking the activity-selectivity dilemma in direct electrocatalytic hydrogenolysis of furfural into furanic biofuel]
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20:09:59 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76167
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Theoretical spectroscopy, and more generally, electronic‐structure theory, are powerful concepts for describing the complex many‐body interactions in materials. They cover methods from ground‐state properties to lattice excitations and light‐matter interaction, including time‐resolved variants. Among the various electronic‐structure codes,
exciting
is an all‐electron full‐potential package that has a very rich portfolio, with a particular focus on excitations. It implements the linearized augmented planewave plus local orbital (LAPW+LO) basis, which is known as the gold standard for solving the Kohn‐Sham equations of density‐functional theory (DFT).
exciting
also offers benchmark‐quality results for a wide range of excited‐state methods. In this review, we provide an overview of the most recent features implemented in
exciting
, accompanied by summaries on the state of the art of the underlying methodologies. They comprise DFT and time‐dependent density‐functional theory (TDDFT), density‐functional perturbation theory (DFPT) for phonons and electron‐phonon coupling, and many‐body perturbation theory in terms of the approach and the Bethe‐Salpeter equation (BSE). Moreover,
exciting
can handle resonant inelastic x‐ray scattering (RIXS), pump‐probe spectroscopy, as well as exciton‐phonon coupling (EXPC). Finally, we cover workflows and a view on data and machine learning (ML). All aspects are demonstrated with examples for scientifically relevant materials.
]
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20:09:59 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75142-1
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Seconds-scale exfoliation of high-quality 2D crystals enabled by polycyclic aromatic hydrocarbon radical anion-mediated organoalkali intercalation]
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20:10:00 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75170-x
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Bipolar membranes reveal surface-hydroxyl-structure-dependent water dissociation mechanism]
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20:10:01 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75278-0
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Cutaneous development is initiated by crosstalk between non-neural ectodermal epithelium and underlying mesenchymal cells. Recent studies have shown that some mesenchymal cells contribute to keratinocyte regeneration in injured skin. However, whether mesenchymal cells contribute to keratinocyte formation in physiologically normal skin remains unclear. Here we show, using lineage tracing, single-cell transcriptome and epigenome analyses of mouse skin, that the interfollicular epidermis consists largely of mesenchymal-lineage cells. Further lineage-tracing and live-imaging analysis of mouse embryos indicate that these mesenchymal-lineage epidermal progenitor cells arise from ectomesenchyme and contribute to the surface ectoderm through a mesenchymal-to-epithelial transition-like process between embryonic days 8.5 and 9.5. We also establish human induced pluripotent stem cell-derived ectomesenchyme and demonstrate that it generates p63-expressing keratinocytes. These data reveal a previously unappreciated contribution of ectomesenchyme to cutaneous development and provide insight into skin diseases involving epidermal mosaicism.]
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20:10:01 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76442
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CO conversion
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Correction to “Nanoparticles (NPs)‐Meditated LncRNA AFAP1‐AS1 Silencing to Block Wnt/β‐Catenin Signaling Pathway for Synergistic Reversal of Radioresistance and Effective Cancer Radiotherapy”]
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20:10:01 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74939-4
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CO2 conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Studies linking mitochondrial DNA (mtDNA) with complex traits are often limited by small sample sizes or focused on specific phenotypes in clinically selected cohorts. Here, we use data from >600,000 participants in the Million Veteran Program (MVP) to perform a multi-ancestry analysis of mitochondrial DNA (mtDNA) variation and cardiometabolic phenotypes across European (EUR), African (AFR), Admixed American (AMR), and East Asian (EAS) populations. After validating 248 mtDNA loci, we identify 10 ancestry-stratified single-variant associations (8 EUR, 2 AFR) and 23 additional signals in sex- and type 2 diabetes (T2D)–stratified analyses. Four variants tagging haplogroup J, D-loop MT228G > A,
MT-ND3
MT10398A > G (p.Thr114Ala),
MT-ND5
MT13708G > A (p.Ala458Thr), and
MT-CYB
MT14798T > C (p.Phe18Leu), are associated with hypothyroidism in EUR and replicated in UK Biobank (UKBB) with concordant effects. In EUR females,
MT-RNR1
MT1555A > G increases the risk of carditis and heart failure phenotypes, supporting prior reports of maternally inherited cardiomyopathy. Gene-based rare-variant tests (minor allele frequency ≤2%) yield 26 associations (12 EUR, 10 AFR, 2 AMR, 2 EAS), including mitochondrial tRNA burdens linked to primary cardiomyopathy (females) and exophthalmos (males). Twenty-three of the 33 single-variant signals map to the endocrine/metabolic category, indicating significant enrichment (Fisher’s exact
P
= 0.003). These results define ancestry- and context-specific contributions of mtDNA to cardiometabolic disease, with a notable concentration in endocrine traits, and provide a framework for mtDNA analysis across diverse biobank cohorts.
]
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CO2 conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Glutamatergic signaling underlies brain structural organization for mathematical and reading abilities in children]
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20:10:02 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75028-2
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CO2 conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
CMG2/ANTXR2 functions as a Collagen VI receptor required for extracellular matrix homeostasis and as the primary portal for anthrax toxin entry. Mutations in CMG2 cause Hyaline Fibromatosis Syndrome (HFS), a rare and often fatal genetic disorder characterized by excessive extracellular matrix accumulation, yet the molecular mechanisms regulating CMG2 function remain poorly understood. We show that CMG2 is controlled by ordered cycles of S-acylation and deacylation that regulate its folding, trafficking, and signalling competence. S-acylation by ZDHHC7 on two juxtamembrane cysteines protects CMG2 from ER-associated degradation by stabilizing folding intermediates, leading to a ~ 5-fold increase in folded receptors competent for ER exit. In the Golgi, ZDHHC3-dependent acylation of a third cysteine promotes Arf6-mediated CMG2 transport to the plasma membrane, where it exerts its functions. Ligand binding triggers recruitment of the thioesterase APT2, which enables release of CMG2 from the actin cytoskeleton and endocytosis, linking extracellular recognition to intracellular signalling and uptake. Inhibition of APT2 reduces Collagen VI turnover and strongly attenuates anthrax toxin toxicity in a zebrafish model, showing lipidation cycles as regulators of receptor function and potential therapeutic targets.]
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20:10:02 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74791-6
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Visual learning at fast and slow timescales is driven by distinct plasticity rules in primate inferotemporal cortex]
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20:10:02 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75263-7
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CO2 conversion
CO conversion
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Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Monocytes are key circulating effectors of vascular homeostasis, innate immunity and inflammation. Following their generation in mouse bone marrow, classical (Ly6C
high
) monocytes are mobilized into the blood circulation where they mature into non-classical (Ly6C
low
) patrolling monocytes or are recruited into peripheral tissues where they differentiate into tissue resident or inflammatory macrophages. Monocytes and macrophages express CSF1R (CD115), the receptor for lineage-specific growth factors CSF1 and IL-34. Here, we report that acute CSF1R blockade or genetic deletion negatively interferes with monocyte intracellular metabolism and reduces blood Ly6C
low
monocytes in part by blunting differentiation of Ly6C
high
monocytes. Based upon lineage-specific deletion of Glutamine-Fructose-6-Phosphate Transaminase 1 (GFPT1), the hexosamine biosynthetic pathway (HBP) is identified as an important regulator of CSF1R expression and monocyte subsets. Inhibition of receptor tyrosine kinases CSF1R and FLT3 rewires and partially impairs metabolic activity in human monocytes. Our findings provide insights into the link between CSF1R signaling, metabolic regulation, and monocyte survival and differentiation.
]
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20:10:03 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.3762/bjoc.22.82
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CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [
A concise and efficient synthetic route to novel 1,2,4-oxadiazole-isoxazoline hybrids
7
has been developed via regioselective 1,3-dipolar cycloaddition of in situ-generated nitrile oxides with 3-(
p
-substituted-aryl)-5-vinyl-1,2,4-oxadiazoles
6
. The target compounds
7a–ay
were obtained in moderate to excellent yields (16–97%) and fully characterized by IR, NMR, and HRMS analyses. The reactions exhibited high regioselectivity, exclusively affording 5-isoxazoline derivatives, while substituent effects played a decisive role in modulating reaction efficiency. In silico studies revealed that all hybrids
7a–ay
display strong binding affinities toward the adenosine A₁ receptor (−10.0 to −8.3 kcal/mol), surpassing the co-crystallized ligand and engaging in key stabilizing interactions within the binding pocket. Furthermore, ADMET predictions indicated favorable drug-likeness, high gastrointestinal absorption, and suitable physicochemical properties. Overall, these findings identify 1,2,4-oxadiazole-isoxazoline hybrids as promising and tunable scaffolds for the development of adenosine A₁ receptor-targeted agents; however, further structural optimization and comprehensive biological evaluation are required to fully validate their therapeutic potential.
]
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20:10:03 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76344
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Device‐associated thrombosis remains a critical problem in cardiovascular medicine, often requiring lifelong anticoagulation therapy that paradoxically introduces significant bleeding risks. Here, we present a bioinspired passive flow routing approach that mitigates thrombosis by altering local hemodynamics to reduce stagnation, a primary hemodynamic driver of clot formation. Inspired by flow‐reattachment mechanisms in avian wings and aeronautical slats, we integrate circumferential routing channels into mechanical heart valve housings to redirect a small fraction of forward flow into peri‐ring regions prone to stasis. Computational optimization identifies a configuration that eliminates near‐zero‐shear pockets and reduces exposure to low shear by several orders of magnitude, while maintaining comparable high‐shear exposure relative to control under physiologic conditions. In a fibrin clot deposition assay, the routed design exhibits reduced peri‐ring clot accumulation. In an ovine bypass model without anticoagulation, the routed valve demonstrated improved sinus washout across angiographic assessments and, unlike the control, explant examination after three months showed no macroscopic thrombus at the sewing‐ring interface. Preliminary computational extensions indicate that passive flow routing can alleviate stagnation in additional cardiovascular geometries. These findings establish bioinspired passive flow routing as a hemodynamic design strategy to mitigate thrombosis in cardiovascular devices by targeting the hemodynamic root cause of stasis.]
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20:10:03 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75249-5
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [AI-guided CRISPR screening reveals therapeutic targets in psoriasis]
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20:10:03 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74050-8
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CO conversion
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Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Efficient algorithms are needed to segment vasculature in new 3D medical imaging datasets at scale for research and clinical applications. Manual segmentation of vessels in images is time-consuming and expensive whereas computational approaches have limited accuracy. We organize a global machine learning competition, engaging 1,401 participants, to promote development of deep learning methods for 3D blood vessel segmentation in Hierarchical Phase-Contrast Tomography (HiP-CT) datasets. This paper presents a meta-analysis of the top-performing solutions, focusing on segmentation accuracy and morphological analysis. The competition and subsequent analysis reveal convergent methodological innovations: pseudo-labeling approaches that exploit data distributions, metrics and loss functions that optimize for vessel surface and topology, and multi-scale approaches that handle data heterogeneity. Additionally, the paper presents techniques for building deep learning models for the defined task, metrics to assess and compare algorithm performance, and a dataset with manually annotated and curated gold standard segmentations for future studies in blood vessel segmentation within HiP-CT imaging.]
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20:10:04 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.3389/fchem.2026.1864298
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [
Silicate structures are the mineral materials widely studied for their extraordinary structural complexity and versatility. They naturally exhibit self-similarity, making them well-suited for analysis through chemical graphs, graph polynomials, and fractal theory. Fractals, characterized by their self-replicating patterns and intricate structures, have found extensive applications across various domains, particularly in the study of graphical structures. Independence polynomials serve as mathematical representations of molecular and chemical graph structures and have proven to be a powerful tool for analyzing the intricate structural adjacency relationships in graph molecular structures. This article explores the fractal-type silicate triangle graph, characterized by recursive and iterative patterns, as a distinguished class of self-similar graphs. An innovative computational approach is presented for evaluating their independence polynomials and multivariate independence polynomials at specific iterations
n
=
1,2
and 3. This proposed algorithm systematically identifies independent sets and computes the corresponding single-variable, multivariable polynomials and its inverse by employing SAGE mathematical software. A graphical analysis is performed for specific iterations, providing deeper insights into the combinatorial and structural characteristics of these representative graphs.
]
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20:10:04 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.13140/rg.2.2.25503.93603
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Discovery of Benzene]
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20:10:04 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75193-4
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Multi-ancestry gene expression models amplify transcriptome-wide association study discovery and validation]
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20:10:04 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75132-3
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [CAF-derived PAI-1 serves as an EGFR ligand and fuels KRAS-mutant pancreatic cancer]
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20:10:05 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76328
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
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Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Fe(II)/α‐ketoglutarate‐dependent dioxygenases (αKGDs) are versatile biocatalysts whose catalytic activity relies on an efficient supply of O
2
and αKG. However, in engineering applications, the O
2
supply is seldom considered, whereas αKG is typically supplied through the oxidation of
l
‐glutamate by
l
‐glutamate oxidase, which concomitantly produces H
2
O
2
that potently inhibits αKGD activity. This study developed a tunnel engineering strategy based on random accelerated molecular dynamics and protein structuromics to precisely modulate the access of small molecules (O
2
and H
2
O
2
) to isoleucine dioxygenase (IDO), enhancing O
2
transport while resisting H
2
O
2
transport. Notably, mutant 1 (L179C/V225F/I240V) and mutant 2 (N193S/V225I/I240V) displayed markedly higher catalytic activity for five aliphatic amino acid substrates (Leu, Nle, Nva, Met, and Ile), reaching 27.2‐fold greater activity. In addition, mutant 2 exhibited 7.1‐fold higher activity against Ile in the presence of H
2
O
2
. This study highlights O
2
and H
2
O
2
tunnel engineering as a new strategy for enhancing αKGDs activity and antioxidative properties.
]
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20:10:05 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76411
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Metabolism alterations significantly influence the behavior of both bacteria and immune cells in the microenvironment of diabetes‐associated biofilm infections, ultimately determining the outcome of infections. Here, we propose a dual‐target nano‐metabolic therapy based on a biomimetic nanoplatform to combat these infections. The nanoplatform, coated with cellular membranes from pre‐infected macrophages and loaded with glucose oxidase (GOx) and L‐arginine (Arg), facilitates targeted drug delivery. Nitric oxide (NO), generated in situ through the catalytic cascade reaction of GOx and Arg, acts as a dual‐target metabolic regulator. It disrupts bacterial carbon and nitrogen metabolism, particularly the tricarboxylic acid (TCA) cycle and amino acid metabolism, effectively eliminating biofilms. Simultaneously, NO modulates macrophage metabolism, shifting it from oxidative phosphorylation to aerobic glycolysis by suppressing TCA cycle enzymes and electron transport chain complexes, while preserving mitochondrial integrity. This energy metabolism transition reverses macrophage immunosuppression, enhancing their phagocytic and invasive functions to promote infection clearance. Experiments with multiple clinical bacterial strains and various diabetic infection models highlight the therapeutic potential of combining metabolism interference with immune modulation, offering new insights for the treatment of diabetes‐associated biofilm infections.]
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20:10:05 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-73050-y
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [High-sensitive glycomics using seGRAP-mass spectrometry uncovers a conserved N-glycome in single human oocytes]
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20:10:05 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75191-6
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Time-resolved Coulomb explosion imaging of a photochemical ring opening reaction]
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20:10:06 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76387
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Answer with either: yes, no or maybe. If yes or maybe, please provide also the subcategory after a semicolon.
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Type‐II superconductors under magnetic fields remain in a quantum‐coherent, non‐dissipative state as long as vortices are pinned. Dissipation emerges when vortices depin, a process often driven by thermal fluctuations and commonly associated with a melting transition from a vortex solid to a vortex liquid. Macroscopic experiments almost always observe this transition close to the superconducting critical temperature . However, how the vortex solid responds to thermal fluctuations at the scale of individual vortices, far below the melting transition, remains largely unexplored. Here, we use scanning tunneling microscopy (STM) to directly visualize vortices in the iron‐based superconductor (). We observe the formation of vortex liquid droplets—spatially localized regions where vortices exhibit strong thermal fluctuations—at temperatures as low as . These results demonstrate that the onset of dissipation at the local scale occurs at temperatures significantly below in type‐II superconductors, revealing a previously unrecognized regime of vortex dynamics.]
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20:10:06 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.202520331
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Answer with either: yes, no or maybe. If yes or maybe, please provide also the subcategory after a semicolon.
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Mounting evidence highlights the involvement of extra‐intestinal organs in inflammatory bowel disease (IBD) progression, yet the mechanisms underlying gut‐extraintestinal organ crosstalk remain poorly understood. Extracellular vesicles (EVs) serve as pivotal mediators of inter‐organ communication. Here, this study demonstrates that circulating EVs from colitis exacerbate colitis severity by inducing neutrophil extracellular trap (NET) formation. Inhibition of circulating EV secretion or NET formation alleviates colitis severity. Mechanistically, EVs enriched with interleukin‐7 receptor (IL‐7R) are identified as critical drivers of NET‐mediated colitis exacerbation. Downregulation of IL‐7R ameliorates colitis symptoms, whereas IL‐7R upregulation worsens disease progression. IL‐7R is found to induce NETs via the protein‐arginine deiminase type 4 (PAD4) pathway to aggravate colitis. Furthermore, this study establishes that thymus‐derived EVs are the primary source of IL‐7R‐enriched circulating EVs. During colitis, elevated circulating lipopolysaccharide (LPS) stimulates the thymus to release IL‐7R‐enriched EVs, which then migrate via the thymus‐gut axis and promote NET formation in colonic tissues. This study reveals a previously unrecognized thymus‐gut communication axis mediated by IL‐7R‐enriched EVs in IBD pathogenesis and provides an explanation for why IBD predominantly affects children and young adults. Targeting this axis may offer novel therapeutic strategies for IBD management.]
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20:10:06 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75168-5
20:10:06 2002658 AIClient - Request to AI with prompt: 'Given the following abstract of the publication, is it relevant to any of the following subcategories?
Answer with either: yes, no or maybe. If yes or maybe, please provide also the subcategory after a semicolon.
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Eco-evolutionary responses of species distributions to climate change]
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20:10:07 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75044-2
20:10:07 2002658 AIClient - Request to AI with prompt: 'Given the following abstract of the publication, is it relevant to any of the following subcategories?
Answer with either: yes, no or maybe. If yes or maybe, please provide also the subcategory after a semicolon.
Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Changes in heritability and shared environmentality of educational attainment across twentieth-century Norway]
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20:10:07 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76314
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Osteoarthritis (OA) is a prevalent degenerative joint disease with limited effective treatment options. Joint inflammatory pain is a primary reason patients seek care, but systemic drug administration often causes severe side effects, while intra‐articular injection suffers from rapid clearance and poor tissue penetration. Herein, we develop nanozyme‐based Janus nanomotors loaded with metformin (MET) for reactive oxygen species (ROS)‐targeted therapy in OA. Leveraging intrinsic superoxide dismutase (SOD) and catalase (CAT) enzymatic activity, these nanomotors harness pathologically elevated ROS within the articular microenvironment as chemical fuel, achieving self‐propelled deep penetration into both cartilage and synovial tissue. This mechanism facilitates simultaneous on‐the‐move ROS scavenging and sustained deep‐tissue MET release, which further restores redox homeostasis and protects chondrocytes by regulating the NRF2/KEAP1 signaling pathway. Furthermore, the nanomotors can suppress nociceptive signaling in the dorsal root ganglia (DRG), thereby alleviating joint pain and improving mobility. This research offers a novel and efficient approach for cartilage protection and arthritis pain management.]
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20:10:08 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74740-3
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Dipeptidyl peptidase 3 sets the threshold for immune activation and survival during experimental bacterial infection]
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20:10:08 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74997-8
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Answer with either: yes, no or maybe. If yes or maybe, please provide also the subcategory after a semicolon.
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Accurate deconvolution of cell states from bulk tumor RNA-seq is hindered by heterogeneous malignant cells specifically in cancer applications. We present Statescope, a Bayesian framework that incorporates DNA-derived malignant cell purity to overcome this heterogeneity and explicitly models inter-sample variation to accurately identify cell states. Comprehensive benchmarking shows Statescope outperforms existing methods in both cell fraction and state estimation, and is unique in its ability to identify states entirely absent from single-cell references. In real-data applications, Statescope successfully recapitulates established cell states, including multiple states in neutrophils, a cell type often missed by single-cell methods in lung cancer. Critically, in the POPLAR/OAK clinical trials, Statescope identifies a combinatorial signature of effector CD8 + T cells and conventional dendritic cell states that together predict a striking survival benefit from immunotherapy. Collectively, Statescope transforms deconvolution into a versatile discovery platform, enabling deeper biological and clinical insights from widely available bulk multi-omics data.]
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20:10:09 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74683-9
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Supramolecular polymerization within living cells has emerged as a promising strategy for controlling cellular functions. Lipid droplets, intracellular organelles mainly composed of neutral lipids, provide low-polarity environments, yet their role in regulating supramolecular assembly pathways remains unclear. Here we show that triolein, a representative triacylglycerol featuring three ester groups and cis-9-octadecenyl chains, acts as an effective medium for kinetically controlled supramolecular polymerization. An alanine-based diamide-functionalized fluorophore forms supramolecular polymers in triolein through a nucleation-elongation mechanism, in which an initial nucleus triggers subsequent growth. Although the thermodynamic stability is comparable to that in di-
n
-butyl ether, a commonly used organic solvent, triolein suppresses spontaneous nucleation and inter-fiber bundling, creating a lag phase during which seeded polymerization guides monomers along a defined assembly pathway. Kinetic studies with ethyl oleate, a structural analogue of triolein, indicate that transient solute-solvent interactions contribute to the suppression of both nucleation and bundling events. This kinetic control enables stepwise seeded growth of multiblock nanostructures and establishes neutral lipids as functional media for the precision-controlled construction of supramolecular polymers.
]
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20:10:09 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76347
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Predicting soil carbon dynamics under warming is constrained by limited understanding of microbial thermal adaptation, particularly whether microbial carbon use efficiency (CUE) can adapt to warming and how plant diversity modulates this response. Using soils from a natural tree species diversity gradient in a subtropical forest, we combined a 365‐day laboratory incubation with regular substrate amendment and
18
O‐H
2
O labeling to quantify thermal responses of microbial respiration, growth, and CUE. High tree species diversity was associated with a strengthened compensatory thermal adaptation of microbial respiration and growth, effectively dampening their response to warming. Simultaneously, diversity promoted an enhanced thermal response of CUE, increasing microbial carbon retention capacity under warming. This dual regulation was mechanistically linked to a cascade of processes: higher tree species diversity was associated with lower soil organic matter stability (i.e., higher lability), minimizing bioenergetic costs of enzyme synthesis, facilitating a community‐wide shift toward r‐selected bacteria, and intensifying microbial competition as evidenced by network topology. Our findings reveal the potential of biodiversity to buffer soil carbon losses: conserving and restoring plant diversity can enhance soil capacity to mitigate climate change, both by reducing respiratory carbon losses and by increasing the potential for microbial carbon sequestration under warming.
]
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20:10:09 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75218-y
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Whispering gallery mode microcavities provide strong light–matter interactions owing to their ultrahigh optical confinement, but the small gas refractive index change limits their ability to sense trace gases. Here we show that gas absorption can be detected using a dissipative sensing mechanism in a non-functionalized whispering gallery mode microcavity. Instead of tracking resonance frequency shifts used in conventional dispersive sensing, our method converts optical absorption into variations in resonance depth through thermally induced dissipation. Quantitative carbon dioxide detection was achieved over a concentration range of 1.5 to 400 parts per million with a correlation coefficients exceeding 0.99. The sensor reached a detection limit of 168 parts per trillion at an integration time of 400 seconds and an accuracy of approximately 0.4%. Continuous monitoring further demonstrated stable operation under ambient conditions. These results establish dissipative microcavity sensing as a promising approach for compact, low-cost, and highly sensitive trace gas detection.]
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20:10:09 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74225-3
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Tendon-driven continuum robots with spatial manipulability face fundamental challenges in miniaturization, stemming from the space required to accommodate multiple actuation tendons. Conventional multi-tendon designs create an inherent trade-off between miniaturization, 3D manipulability, and force output. Here, we introduce a class of continuum robots that achieves controllable body twist and full omnidirectional motion driven by pushing, pulling, and twisting a single tendon, breaking this long-standing design constraint. The resulting robot features an outer diameter of 2.0-3.5 mm and a circumferential hollow ratio exceeding 57%, nearly doubling spatial utilization efficiency over multi-tendon designs. Compared to conventional mechanisms, manipulability improves by over 1000-fold while retaining at least 70% of tip force across all directions. We derive the kinematics for this robot class and provide an open-source simulator. We demonstrate capabilities in teleoperation, navigation in tortuous environments, chopstick-like continuum grippers for in-gripper manipulation, and potential medical applications. Our design redefines actuation paradigms for tendon-driven continuum robots.]
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20:10:10 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75004-w
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Applying Artificial Intelligence and machine learning in precision nutrition]
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CO2 conversion
CO conversion
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Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [S1 Column Averaging Kernels 0.2 0.4 0.6 0.8 1.0 Column Averaging Kernel 0 200]
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20:10:10 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1021/jacsau.6c00314
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CO2 conversion
CO conversion
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Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Hydrogen-Induced Unexpected Strong 8c–2e ϕ Bond in An
2
H
8
(An = Pa - Pu) Complexes]
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20:10:11 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75219-x
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CO conversion
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Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Pangenomes of several species have been assembled recently, facilitating the detection and genotyping of structural variants. As part of the FarmGTEx Project, we previously constructed a Holstein pangenome (H20D) based on 40 phased haploid assemblies. Here, we use this breed specific pangenome to genotype 93,059 structural variants from whole-genome sequences of 1,571 cattle. We then develop a Holstein pangenome variation imputation reference panel we name HolPIP. Leveraging HolPIP, we impute 86.65% (68,354/78,886) of structural variants for 50,299 bulls with Beagle R² ≥ 0.8. Using these imputed structural variants and phenotypes for 43 complex traits, we conduct GWAS, identifying 1,225 structural variant-trait associations. We next use fine-mapping to prioritize 32 high-confidence candidate structural variants, including a 75-bp deletion in
ANKRD11
linked to dairy form, rump width, and stature, as well as an insertion in
DHX32
associated with RNA metabolism. Compared to SNPs across various functional annotations, structural variants show a stronger genome-wide enrichment across most complex traits in cattle, suggesting that structural variants may have an important contribution to the genetic basis of dairy traits.
]
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20:10:11 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75055-z
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Li–air chemistry inspired electrodialysis for direct lithium carbonate production from seawater]
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20:10:11 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.13140/rg.2.2.32634.25281
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [PT Symmetry as a Resolution of the Ghost Problem in Higher-Derivative Gravity: A Critical Review of the Bender–Mannheim Program]
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20:10:11 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75085-7
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CO2 conversion
CO conversion
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Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Observation of non-adiabatic non-Abelian braiding of matter waves]
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20:10:12 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s42003-026-10501-8
20:10:12 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74753-y
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CO2 conversion
CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Myofiber-specific knockout of TGF-β type I receptors in mice concurrently drives muscle hypertrophy, oxidative metabolism, and absolute force]
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CO2 conversion
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Chemicals used as sacrificial electron donor
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Neural circuit development in the human cortex is considerably prolonged in comparison to non-human primates, a trait that contributes to the remarkable cognitive capacity of modern humans. Here, we explore the regulatory role of non-coding RNAs, which dramatically expanded during brain evolution, in synapse development of human induced pluripotent stem-cell derived neurons. We found that inhibition of a human-specific microRNA, miR-1229-3p, alters the trajectory of human neuronal maturation and enhances excitatory synaptic transmission. Transcriptome analysis following miR-1229 knockdown revealed a downregulation of mitochondrial DNA (mtDNA) encoded genes. We further show that miR-1229 regulates mitochondrial morphology, mtDNA abundance as well as mitophagy, and that stimulation of mitochondrial metabolism rescues decreased calcium buffering in miR-1229-3p depleted neurons. Accordingly, miR-1229 directly targets an entire network of genes involved in mitochondrial function and ER-associated protein homeostasis. Our findings reveal an important function of human-specific miR-1229-3p in developmental timing of human synaptogenesis and generally implicate non-coding RNAs in the control of human connectivity and cognition.]
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20:10:12 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75163-w
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CO2 conversion
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Chemicals used as sacrificial electron donor
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [A multi-fidelity tabular prior-data fitted network model for accurate prediction and uncertainty quantification]
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20:10:13 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1021/jacsau.6c00604
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Z
-Selective Synthesis of Trisubstituted Alkenes Bearing Allylic Tertiary Amines via Rhodium-Catalyzed Allylic Amination of 1,1-Disubstituted Fluoromethyl Trichloroacetimidates]
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20:10:13 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75203-5
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Ancient plume-reinforced lithosphere modulates present-day crustal fluid migration and deformation]
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20:10:13 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76335
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Germinal centers (GCs) are transient microanatomical structures that coordinate humoral immune responses through dynamic interactions between antigen presenting cells, T follicular helper cells, and B cells. Despite their central importance to immune protection, GC human biology remains difficult to interrogate due to significant inter‐species variability, limited experimental accessibility to primary human tissues, and high interindividual variability. We developed a human immune culture platform that supports spontaneous multicellular organization of human peripheral blood mononuclear cells derived from primary CD19+ B cells, memory CD4+ T cells, and monocyte‐derived dendritic cells into Germinal Center‐like Organoids (GCLOs). These bioengineered GCLOs self‐organize into stable clusters that exhibit stimulus and donor dependent differences in cellular composition and function. We observed the emergence of GC‐like T and B cell subsets, functional IgG output, and the appearance of plasmablast‐like populations. Notably, the age of the donors and the type of stimuli influenced GCLOs architecture, immune subsets, and antibody output. Platform outputs showed correspondence with clinical vaccine responsiveness across human donors, capturing inter‐individual differences in humoral GCLO immune responses to the flu vaccine, including age‐associated trends consistent with immunosenescence. This platform allows scalable investigation of human GC‐associated immune features and provides a tractable framework for studying donor heterogeneity in humoral immunity.]
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20:10:13 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76402
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CO2 conversion
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Chemicals used as sacrificial electron donor
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Anaplastic thyroid carcinoma (ATC) is an exceptionally aggressive malignancy with dismal survival, largely due to intrinsic cisplatin resistance. This study identifies a novel mechanism by which small extracellular vesicles (sEVs) promote chemoresistance by enhancing DNA repair via protein lactylation. ATC cells secrete sEVs enriched with Annexin A2 (ANXA2). Upon delivery to recipient ATC cells, ANXA2 stabilizes the interaction between SRC kinase and lactate dehydrogenase A (LDHA), leading to increased LDHA phosphorylation (Y10), enzyme activity, and lactate production. The resulting lactate surge serves as a substrate for lysine lactylation. Ku80 (XRCC5) is identified as a key lactylation target at K265, catalyzed by the acyltransferase KAT5. This lactylation modification strengthens the interaction between Ku80 and its partner Ku70 (XRCC6), stabilizing the initial DNA‐end binding complex in the non‐homologous end‐joining (NHEJ) repair pathway. Consequently, NHEJ efficiency is significantly enhanced, enabling ATC cells to rapidly repair cisplatin‐induced DNA double‐strand breaks and survive treatment. Genetic disruption of the XRCC5‐K265 lactylation site or pharmacological inhibition of LDHA sensitizes ATC xenograft tumors to cisplatin, while in vitro, inhibition of the SRC/LDHA axis produces a similar chemosensitizing effect. This work unveils the ANXA2
+
sEV/SRC/LDHA/lactate/XRCC5‐lactylation axis as a critical driver of NHEJ‐mediated chemoresistance in ATC, offering new potential therapeutic targets.
]
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20:10:14 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74807-1
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Sequence-to-function neural networks learn cis-regulatory sequence rules driving many types of genomic data. Interpreting these models to relate the sequence rules to underlying biological processes remains challenging, especially for complex genomic readouts such as MNase-seq, which maps nucleosome occupancy but is confounded by experimental bias. Here, we introduce pairwise influence by sequence attribution (PISA), which uses attribution to combinatorially decode which bases contributed to the readout at a specific genomic coordinate. PISA visualizes the effects of transcription factor motifs, detects undiscovered motifs with complex contribution patterns, and reveals experimental biases. By learning the bias for MNase-seq, PISA enables unprecedented nucleosome prediction models. These models allow the de novo discovery of nucleosome-positioning motifs and reveal the basis of Micro-C chromatin domain boundaries through systematic motif perturbations. Finally, these models allow the design of sequences with altered nucleosome configurations. These results show that PISA is a versatile tool that expands our ability to train and interpret sequence-to-function neural networks on genomics data and understand the underlying cis-regulatory code.]
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20:10:14 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76454
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Passive radio‐frequency identification technology (RFID) shows potential for non‐line‐of‐sight (NLoS) sensing, but electromagnetic attenuation and reflection losses caused by dielectric absorption and multipath effects reduce detection accuracy and stability. In this work, a flexible passive RFID sensor for NLoS ammonia detection is developed by integrating a spiral antenna with an LC interdigital electrode. MXene is modified with In
2
O
3
nanoparticles to form a gas‐sensitive layer with enhanced surface activity and electronic modulation, thereby strengthening the ammonia‐induced frequency response. Moreover, structural separation of electromagnetic coupling and sensing functions mitigates the nonuniform distribution of coupled electromagnetic energy in the sensing tag. The experimental results demonstrate response characteristics under NLoS dielectric interference, with an
S
11
amplitude attenuation of
Δ|S
11
|
= 9.19 dB and an ammonia‐induced resonance frequency shift of
Δ
|
f
| = 0.48 MHz. On this basis, an
S
11
amplitude‐frequency signal separation strategy is innovatively proposed to decouple NLoS dielectric interference signals from gas‐induced response signals, thereby clarifying the frequency perturbation effect of dielectric interference on ammonia sensing signals. Combined with electromagnetically decoupled signals, dielectric interference compensation is performed under conditions of 25°C and 40% RH. NLoS dielectric compensation stabilizes ammonia‐induced frequency shifts, suppresses interference, and enables reliable, rapid, nondestructive detection of quality deterioration in sealed fresh‐food packaging.
]
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20:10:14 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75125-2
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Bclaf1 drives heart failure by recruiting Srsf2 to enhance Hand2 pre-mRNA splicing and pathological hypertrophy]
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20:10:14 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75210-6
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CO2 conversion
CO conversion
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Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
The alpine biome, located at higher elevations of mountains worldwide, supports unique biodiversity and provides important ecosystem contributions to people. Despite the growing recognition of mountain biodiversity in international policy frameworks, substantial gaps remain in our understanding of how alpine biodiversity varies across mountain systems, undermining estimates of its conservation value and consequently effective conservation strategies. Here, we curate a dataset on alpine biodiversity, incorporating expert-validated data on species’ elevational ranges for vascular plants, mammals, birds, and reptiles across 32 mountain ranges worldwide. We show that alpine biodiversity hotspots are concentrated in Neotropical regions, while most temperate regions represent coldspots with lower species richness. These patterns persist whether considering species with broad elevational ranges or only those strictly confined to the alpine zone. Unlike the classical latitudinal gradient of biodiversity, alpine richness patterns show no consistent relationship with latitude, highlighting the importance of regional history, landscape structure, and biogeographical processes.]
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20:10:14 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.13140/rg.2.2.25333.54245
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Lecture XII: A First-Principles Calculation of C-13 Binding Energy]
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20:10:15 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75317-w
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Kat5 deficiency in alveolar type II cells licenses STAT6-driven glycolytic reprogramming and pulmonary fibrosis]
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20:10:15 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75241-z
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CO2 conversion
CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Programmed cryogenic fabrication of cuttlebone-inspired lightweight cellular materials with enhanced energy absorption]
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20:10:15 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.202521907
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
The research by Chen et al. (2024) presents an innovative hypothesis linking creatine metabolism to ferroptosis resistance in endometriotic stromal cells via PrP suppression. While conceptually valuable, methodological aspects warrant reflection. A primary concern involves the supraphysiological creatine concentrations used, whose translational relevance is questionable without pharmacokinetic data confirming these levels in the peritoneal environment, particularly in light of available clinical metabolomics data suggesting differences in creatine levels in peritoneal fluid under physiological and pathological conditions. Furthermore, the proposed direct suppression of PrP ferrireductase activity would benefit from complementary biochemical validation using purified systems and affinity measurements to consolidate the molecular mechanism. Although human samples were included, the small cohort size and lack of control for confounding variables limit the specificity of interpretation, source attribution, and the external generalizability of the findings. Finally, future studies should target endogenous creatine synthesis or transport to clarify whether creatine is a causal driver of ferroptosis resistance or simply associated with the inflammatory microenvironment. Overall, Chen et al. provide an exciting contribution; these constructive considerations aim to support future refinements that will solidify the proposed model and its clinical significance.]
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20:10:16 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75031-7
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ZNF689 loss impairs homologous recombination sensitizing triple-negative breast cancer to combined PARP and PD-L1 inhibition]
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20:10:16 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75054-0
20:10:16 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76415
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Establishing a proton‐selective membrane, capable of completely blocking the crossover of other chemical species, has been regarded as a long‐sought‐after goal for the stable and efficient operation of electrochemical devices. Conventional polymeric membranes suffer from an inherent trade‐off between conductivity and selectivity, imposed by their water‐mediated proton‐conduction mechanism, which precludes crossover‐free proton transport. Herein, we demonstrate a unique proton shuttling mechanism of the bipolar palladium membrane that enables selective proton transport while suppressing molecular crossover. Through bipolar electrochemical proton absorption and desorption, coupled with the lattice‐channeled hydrogen diffusion in palladium, the conductivity–selectivity relationship can be fundamentally circumvented. Using the bipolar electrochemical palladium membrane, we construct a water‐fed Li‐mediated N
2
reduction system, suppressing water crossover between an aqueous anolyte and a non‐aqueous catholyte even under continuous flow and enabling water to serve as a sustainable proton source. We achieve an ammonia Faradaic efficiency of 51% and stable operation for 12 h under potential cycling. This study introduces a new ion transport mechanism, expanding the design space for next‐generation electrochemical systems that require strict compartmentalization.
]
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Embryo quality control via lineage-specific aneuploid cell elimination in embryos and stem cell-derived embryo models]
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20:10:17 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74561-4
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Supramolecular Pd
n
L
2n
architectures are versatile molecular platforms with applications spanning catalysis, sensing, and therapeutic delivery. Whereas their thermodynamically driven assembly has been extensively studied, controlled strategies for disassembly remain scarce. Here, we show that ultrasound provides a powerful stimulus to trigger and probe disassembly pathways. Polymer-decorated ligands were synthesised to generate Pd
n
L
2n
assemblies bearing appended polymer chains. Under ultrasound, shear forces transmitted through these chains apply mechanical stress to the square-planar palladium complexes, leading to ligand dissociation. Using Pd
2
L
4
cages, we explore the disassembly pathways and demonstrate ultrasound-triggered release of the anticancer drug cisplatin. Furthermore, we demonstrate that quantitative and entirely reversible activation can be achieved through solid-state ball milling. To illustrate the generality of this approach, we extend it to a Pd
12
L
24
nanosphere, one of the heaviest discrete self-assembled macromolecules reported (133 kDa), and achieve its controlled disassembly. Furthermore, ramped steered molecular dynamics simulations employing a tailored machine-learning interatomic potential reveal the force thresholds for Pd–N bond rupture and a stepwise disassembly pathway. This work establishes ultrasound as a broadly applicable strategy to access otherwise inaccessible kinetic pathways in supramolecular chemistry, with potential for applications in drug delivery and responsive materials.
]
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20:10:17 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74972-3
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Design, synthesis and structural mechanism of action of TRPV1 agonist MSP20 with long-lasting analgesic effect]
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20:10:17 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75067-9
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Cryo-EM structure of African horse sickness virus VP2 receptor-binding protein enables nanoparticle vaccine design]
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20:10:17 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74608-6
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [DNA transposon expansion drives genome plasticity in Diutina catenulata]
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20:10:18 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.13140/rg.2.2.16735.21920
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [carbon sequestration]
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20:10:19 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1145/3803401.3811976
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Authentic Assessment in Discrete Mathematics: Real-World Modelling Using Logic and Set Theory]
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20:10:19 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74977-y
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Although cell monolayers typically remain confluent, they can spontaneously develop persistent holes as a result of collective cellular motion. Recent studies on MDCK monolayers cultured on soft substrates have revealed that cells can align to create regions of local nematic order, and topological defects that generate localised mechanical stresses which can spontaneously trigger hole formation. To investigate this process, we develop a continuum multi-phase field model that incorporates internal dissipation and active dipolar forces that drive cell shape anisotropy. Our simulations show that reducing substrate friction enhances cell-cell velocity correlations. In the low-friction regime, topological defects generate spiral flow patterns that concentrate stress and can trigger hole formation. By contrast, in the high-friction regime, holes do not nucleate. We further demonstrate that the number and stability of the holes—whether they close or persist—depends on both substrate friction and cellular activity, through a non-dimensional friction number. These findings highlight the importance of internal dissipation in modelling collective cell motion and the critical role of collective dynamics in maintaining tissue integrity.]
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20:10:20 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76332
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Flexible near‐infrared (NIR) photodetectors are promising for optical communication, imaging, and wearable sensing, yet simultaneously achieving high responsivity, low dark current, and mechanical robustness remains challenging. Here, we report a flexible
n
‐type hydrogenated amorphous silicon/tellurium (n‐a‐Si:H/Te) heterojunction photodiode enabled by systematic control of the phosphine‐to‐silane dilution ratio and the introduction of a front‐surface‐field (FSF) layer. At the optimized phosphine dilution (P ratio = 25%), the n‐a‐Si:H film exhibits reduced defect density and improved structural ordering, forming an electronically coherent heterojunction with crystalline Te. The resulting device shows pronounced diode rectification and a strong photoresponse at 1050 nm, driven by efficient Te absorption and built‐in‐field‐assisted carrier separation. Furthermore, inserting a 10‐nm‐thick heavily doped n‐a‐Si:H FSF layer between the transparent conductive oxide and the active layer enhances band bending and suppresses interfacial recombination, leading to 5.1‐ and 2.6‐fold improvements in responsivity and detectivity, respectively. External quantum efficiency analysis confirms that the performance enhancement originates from electrical field modulation rather than optical effects. The FSF‐engineered device exhibits broadband operation (400–1600 nm) and maintains over 90% of its initial responsivity after 4000 bending cycles, demonstrating a robust strategy for high‐performance flexible NIR optoelectronics.
]
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20:10:20 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s42003-026-10578-1
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
To achieve a more comprehensive understanding of cancer, novel computational methods are required for the integrative analysis of data from different molecular layers, such as genomics, transcriptomics, and epigenomics. Here, we present an innovative multi-omics integrative method that performs unsupervised representation learning, referred to as OMIDIENT: multiOMics Integration for cancer by DIrichlet auto-ENcoder neTworks. OMIDIENT provides a natural framework for modeling sparse and compositional latent representations by employing a deep generative model, where the latent space is distributed as the product of Dirichlet distributions. Applied to five different cancers, we demonstrate that OMIDIENT outperforms the top state-of-the-art unsupervised multi-omics integrative analysis approaches in clustering, classification, and reconstruction of missing data using mRNA expression data, DNA methylation data, and microRNA expression data. Furthermore, we provide interpretability analyses for OMIDIENT that not only support its improved performance, but also offer valuable insights into the underlying structure captured by the learned representations.]
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20:10:21 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75065-x
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Time-staggered chemo-immunotherapy via engineered nanofiber resists postoperative dynamic immunosuppression in glioblastoma]
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20:10:21 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75144-z
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
The genetic variants that cause inherited myopathies vary widely in type, size and sequence context, encompassing small sequence variants, large structural variants, repeat expansions, and more complex events, such as the D4Z4 macrosatellite contraction and hypomethylation that causes facioscapulohumeral muscular dystrophy. Many of these are challenging to characterise using next-generation sequencing and other older molecular technologies. To address this, we developed a targeted long-read sequencing assay and bioinformatics analysis framework that captures the full suite of genes, variants and epigenetic signatures currently implicated in inherited myopathies. Applying this to a cohort of myopathy patients, we demonstrate the analytical validity of our approach and its improved accuracy and resolution compared to existing methods. Our assay led to new genetic diagnoses in 35.5% (11/31) of patients who remained undiagnosed after standard clinical genetic testing. This methodology constitutes a single streamlined assay for comprehensive genetic and epigenetic characterisation of inherited myopathies.]
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20:10:22 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74594-9
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Modulation of splicing is an established therapeutic strategy with clinical applications and potential to target specific exons to influence gene expression. Small-molecule splicing modifiers such as Risdiplam and Branaplam induce inclusion of exons typically skipped due to weak
$${5}^{{\prime} }$$
5
′
splice sites. Risdiplam preferentially induces exons with an N
−3
G
−2
A
−1
sequence at the
$${3}^{{\prime} }$$
3
′
exon end, whereas Branaplam favors A
−3
G
−2
A
−1
-ending exons. However, determinants of specificity remain unclear, as many motif-matching exons are not induced. Here, we investigate the molecular basis of splicing-modulator specificity. Using biochemical assays, transcriptome analyses, and genetic perturbations, we identify sequence-dependent features that determine exon responsiveness to splicing-modulator induction. We further demonstrate that specificity can be reprogrammed through manipulation of U1 snRNA. These findings refine the determinants of splicing-modulator target space and may support identification of additional target exons and compounds.
]
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20:10:22 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75276-2
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
The stem cell niche is a specialised microenvironment essential for maintaining haematopoietic stem cells (HSCs). Here we identify a distinct subset of mesenchymal stem cells (MSCs) expressing integrin α8 (Itga8⁺ MSCs) within the bone marrow (BM) endosteum. These cells exhibit distinct MSC properties and higher haematopoietic supportive activity than other MSC subsets. Depletion of Itga8⁺ MSCs decreased HSC numbers, reduced quiescence of endosteal HSCs and diminished BM repopulating capacity. Itga8⁺ MSCs support haematopoiesis through cell adhesion-related mechanisms. Single-cell RNA sequencing further identified Itga8⁺ MSCs as a distinct subpopulation within bone-lining cells. Moreover, we identified Mfap4 as a candidate factor expressed in Itga8⁺ MSCs, and Mfap4 supported the BM reconstitution capacity of HSCs. These results suggest that Itga8⁺ MSCs represent a distinct niche cell population for HSC maintenance. This work provides new insights into HSC regulation and strategies to optimise in vitro HSC maintenance and enhance in vivo engraftment.]
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20:10:23 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76382
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Autoimmune diseases like multiple sclerosis (MS) and type 1 diabetes (T1D) lack therapies that induce durable, antigen‐specific immune tolerance. We investigated whether mRNA lipid nanoparticles (LNPs) encoding disease‐relevant autoantigens could re‐establish immune homeostasis in preclinical models. While mRNA‐LNP microbial vaccines evoke strong effector immune responses, we show that both systemic and intramuscular delivery of MOG
27‐63
mRNA‐loaded LNPs attenuated disease severity in experimental autoimmune encephalomyelitis (EAE). Antigen‐specific protection was similarly observed in a T1D adoptive transfer model. Therapeutic efficacy achieved using immunostimulatory LNPs challenges the current assumption that tolerogenic mRNA vaccines require immune‐silent LNPs. Furthermore, divergent outcomes between autoantigens and irrelevant antigens suggest that antigen identity determines whether mRNA‐LNPs promote immune tolerance or activation. Mechanistically, optimized LNPs efficiently targeted antigen‐presenting cells (APCs) in the liver and spleen. This promoted a homeostatic APC phenotype and a hyporesponsive CD4
+
T cell phenotype without inducing regulatory T cells (Tregs). Therefore, autoantigen mRNA was co‐delivered with “immunoregulatory” mRNAs encoding cytokines (IL‐2 mutein) or chemokines (CCL1) known to enhance Treg expansion and recruitment. This co‐delivery further improved clinical outcomes in EAE. Together, these findings demonstrate that systemic and intramuscular treatment with mRNA‐LNPs encoding autoantigens alongside immunoregulatory molecules represents a promising strategy for antigen‐specific immunotherapy in autoimmune diseases.
]
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20:10:23 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.202524281
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Understanding mitochondrial morphology and function is critical for investigating mitochondrial diseases, yet fluorescent probes that label the inner mitochondrial membrane (IMM) and report dysfunction at high spatiotemporal resolution remain limited. Here, we rationally designed aggregation‐induced emission‐active probes with tunable alkyl chain lengths and carboxyl groups, allowing us to fine‑tune phototoxicity and achieve a controlled, mild level of reactive oxygen species (ROS) generation. Two probes, named OTS‐7C and OTS‐12C, enabled super‑resolution imaging of mitochondrial cristae using stimulated emission depletion microscopy (STED), while OTS‐12C further supported Hessian‐structured illumination microscopy (Hessian‐SIM) imaging in living cells. Importantly, the controllable ROS output of OTS‑12C supports prolonged time‐lapse imaging of mitochondrial stress responses, including swelling, cristae remodeling, and recovery. We further demonstrated that it could serve as a platform for evaluating antioxidant effectiveness, using Vitamin C and Astaxanthin as model antioxidants. Meanwhile, fluorescence lifetime imaging of OTS‐12C revealed that ROS‐induced oxidation of unsaturated lipids increased its fluorescence lifetime within the IMM, permitting real‐time monitoring of mitochondrial functional states. This work presents a simple yet effective strategy to fine‐tune the phototoxicity of AIE photosensitizers and provides OTS‐12C as a versatile fluorescent probe for high‐resolution visualization of mitochondrial ultrastructure, investigating mitochondrial stress management and evaluating drug antioxidant efficacy in living cells.]
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20:10:24 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76345
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
The risk profile of valvular heart disease (VHD) and its underlying mechanisms remain poorly understood. This study aimed to develop and validate a multi‐omics‐based risk prediction model, and to elucidate potential biological mechanisms. Using data from the UK Biobank, Cox proportional hazards and machine learning models (XGBoost and LightGBM) were evaluated for predicting VHD and its subtypes (aortic valve stenosis, AVS; aortic valve regurgitation, AVR; mitral valve regurgitation, MVR). Cox models based on key clinical factors showed the best predictive performance (C‐index of 0.75–0.81), which was further enhanced by incorporating proteomic data (all C‐index > 0.81) but not by genomic or metabolomic data. Notably, a simplified 10‐year model comprising only four top proteins maintained favorable performance (C‐index of 0.75–0.82). Cluster analysis identified blood pressure and lipid levels as leading modifiable risk factors for VHD onset. Functional enrichment analysis revealed that VHD is primarily associated with protease inhibition, AVS with fibrotic and matrix metabolic pathways, and MVR with immune‐inflammatory activation. Mendelian randomization and Bayesian colocalization analyses suggested causal associations between CNTN5 and CD8A with risks of AVS and MVR, whilst IGFBP7 showed a reverse‐direction association with AVS. These findings highlight promising avenues for early diagnostic biomarkers and potential precision‐targeted therapies.]
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20:10:24 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74986-x
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CO conversion
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Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Mitigating polymer-induced self-inhibition with microenvironment-decoupled Sn(II) single-atom catalysts for pollutant polymerization]
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20:10:25 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75126-1
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Plasmodium falciparum
oocysts undergo an explosive biomass increase during development in
Anopheles
mosquitoes, a dramatic growth process likely promoted by as-yet unknown nutrients scavenged from the mosquito. We previously observed in blood-stage parasites, that the amino acid transporter PfApiAT2, although dispensable, regulates proline homeostasis and mediates resistance to halofuginone, a potent proline-tRNA synthetase inhibitor. Here, we demonstrate that PfApiAT2 is a proline-specific transporter essential for early oocyst development in
Anopheles gambiae
. Halofuginone-resistant
pfapiat2
-mutant parasites form stunted oocysts severely defective in sporozoite production. This phenotype is recapitulated in PfApiAT2-knockout parasites that undergo a complete block in sporogony, forming oocysts that stall and degenerate. Remarkably, this growth defect can be rescued by nutrient supplementation to the mosquito vector. By identifying an amino acid transporter essential for oocyst growth, our data unveil a vulnerability in
P. falciparum
transmission, revealing a critical nutritional dependency of the parasite on its mosquito vector.
]
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20:10:25 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s42003-026-10631-z
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Entamoeba histolytica Gal/GalNAc lectin intermediate subunit as a potential driver of inflammation and epithelial damage in intestinal amebiasis]
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20:10:26 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75294-0
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Zeolitic isolated protonic acid sites-mediated NH3 storage for robust NOx removal]
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20:10:26 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75211-5
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Programmable memtransistor array with temporal dynamics modulation for efficient time-series data processing]
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20:10:27 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.3762/bjoc.22.77
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [
Spacer length is a key molecular parameter governing the self-assembly of short peptides. Here, we investigate isoleucine-cysteine-alanine (ICA) tripeptides containing carbon spacers of 6, 3, or 0 methylene units linking the peptide backbone to a hydrophobic naphthalene (Nap) π-block. Using complementary spectroscopic and microscopic techniques, we show that spacer length controls the balance between conformational flexibility and directional non-covalent interactions, thereby dictating assembly pathways and material properties. The results establish a correlation between spacer length and assembly propensity, with the longest spacer (C
6
) consistently promoting aggregation more effectively than the intermediate analogue (C
3
), whereas peptides containing the rigid C
0
-spacer fail to develop ordered nanostructures. These findings identify spacer length as a powerful design parameter for tuning peptide self-assembly across multiple length scales.
]
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20:10:27 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s42003-026-10554-9
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Non-canonical role of Ku80 stabilizes Rab7A to enhance mitolysosome formation and chemotherapy in liver cancer]
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20:10:28 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76446
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Alkene hydrogenation reactions are essential processes widely utilized across diverse scientific fields for the production of pharmaceuticals, natural products, and various functional materials. Current strategies (e.g., metal hydrogen atom transfer [mHAT], photo/electrochemistry) consistently necessitate compromises, invariably involving transition metals, pressurized H
2
, or solvent‐intensive conditions. Herein, we report a mechanochemical hydrogenation reaction of both activated and unactivated alkenes via piezoelectric catalysis under conditions that are free from transition‐metals, H
2
gas, and solvents. This approach exhibits good compatibility with various functional groups and demonstrates a broad substrate scope. In addition, the hydrogenation of bioactive molecule derivatives for modification purposes highlights its potential applications in the pharmaceutical industry. Based on mechanistic investigations, we propose a potential mechanism for the alkene hydrogenation via piezoelectric catalysis.
]
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20:10:28 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.13140/rg.2.2.26198.61760
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [2026-015 SHEAHANITE]
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20:10:29 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74529-4
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Robust SWCNT-OH/GO membranes for scalable recovery of moxifloxacin from high-salinity organic wastewater]
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20:10:30 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s42003-026-10610-4
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Tartrazine, along with many other absorbing molecules, has recently emerged as a promising tissue-clearing agent for achieving transient and reversible optical transparency in live animals. In this mini-review, we describe the fundamental physical origins of tissue opacity, extract engineering principles guiding the design of next-generation dye-based clearing agents, and summarize recent advances in dye-enabled in vivo tissue clearing. We also discuss current challenges and offer forward-looking perspectives to inform future research.]
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20:10:30 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76377
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Pyroptosis is an inflammatory type of programmed cell death that may contribute to epilepsy initiation and progression through neuroinflammation. Fatty acid binding protein 5 (FABP5), a lipid chaperone, has been implicated in chronic inflammation. However, whether FABP5 regulates pyroptosis and its pathological role in epilepsy remains uncharacterized. Here, FABP5 was upregulated in astrocytes from temporal lobe epilepsy (TLE) patients, epileptic mice, and primary cells. Deletion of astrocytic
Fabp5
significantly attenuated pyroptosis, neuronal loss, and seizure activity in epilepsy. Furthermore, cyclic GMP‐AMP synthase (cGAS)‐stimulator of interferon genes (STING) pathway was identified as the downstream signaling of FABP5 by RNA sequencing analysis. Mechanistically,
Fabp5
knockdown reduced lipid overload, alleviated mitochondrial dysfunction, and suppressed cGAS‐STING activation. Pharmacological inhibition of mitochondrial fatty acid import recapitulated these protective effects. In contrast,
Sting
overexpression abolished the reduced pyroptosis level by
Fabp5
knockdown, whereas STING inhibition using C‐176 attenuated pyroptosis and seizure activity. Collectively, these findings revealed the regulatory role of FABP5‐cGAS‐STING‐pyroptosis axis in the progression of epilepsy and highlighted the promising potential of astrocytic FABP5 as a therapeutic target for epilepsy.
]
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20:10:31 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75220-4
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Causal Dynamics of Social Gaze in Primate Prefrontal-Amygdala Networks Revealed by Dynamic Bayesian Modeling]
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20:10:31 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-73965-6
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Accurate monitoring of small-scale seismic events is essential for seismological studies. Traditional techniques rely on manual or automated seismic phase picking, which often leads to inaccuracies in microseismic monitoring due to unclear phase onsets. Here we introduce the Quake Neural Operator (QNO), a deep learning algorithm that builds earthquake catalogs directly from continuous data without explicit phase picking. As a multi-task operator, QNO utilizes classification and regression to detect and locate events across arbitrary seismic network geometries. We show that QNO successfully characterizes events where state-of-the-art phase picking fails. Applying QNO to the Geysers geothermal field, we identify nearly an order of magnitude more seismic detections than reported in routine catalogs. These results are validated through comparison with the Phase Neural Operator and visual inspection. QNO holds the potential to reveal undetected seismic activity, enhancing our understanding of subsurface processes critical to both natural phenomena and industry applications.]
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20:10:32 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75208-0
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Reprogramming macrophage immunometabolism via glutamine antagonism potentiates colorectal cancer therapy in mice]
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20:10:33 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75109-2
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Formation of the activated human spliceosome (B
act
) involves major structural rearrangements, leading to the catalytically active U2/U6 RNA core. This process involves at least two intermediates, pre-B
act-1
and pre-B
act-2
, and is regulated by CDK11-mediated phosphorylation of the U2 snRNP protein SF3B1. However, the mechanisms of this essential step are poorly understood. Here we present the cryo-EM structure of a spliceosome stalled – by the CDK11 inhibitor OTS964 – in a previously undescribed early-activated state, termed pre-B
act-OTS
, shortly after dissociation of U4 snRNP. In pre-B
act-OTS
, the U2-SF3B6 protein is retained in a C-terminal region of the super-helical U2-SF3B1 HEAT domain (SF3B1
HEAT
) that clamps the U2/branch-site helix. In contrast, in pre-B
act-1
, SF3B6 is repositioned to SF3B1’s N-terminal HEAT repeats, thereby preventing a steric clash of SF3B6 with PRP8 during the pre-B
act-OTS
-to-pre-B
act-1
transition. We infer that the CDK11-mediated phosphorylation of SF3B1 drives the relocation of SF3B6, gating progression to B
act
formation. In pre-B
act-OTS
, we also located the RNA helicase DHX15 at the N-terminal region of SF3B1
HEAT
, assisted by the SR140/SPF45/CHERP/SUGP1 protein complex. These results suggest the involvement of DHX15 in kinase-mediated proofreading of the early-activated spliceosome, by competing with CDK11’s phosphorylation of SF3B1, and thus with relocation of SF3B6 at SF3B1
HEAT
.
]
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20:10:33 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76425
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Inflammatory bowel disease (IBD) is a chronic systemic immune disorder with unclear pathogenesis that involves complex interplay between inflammation, gut microbiota, and immune dysregulation. The advance of antibodies targeting tumor necrosis factor‐alpha and interleukin‐12/23, e.g., infliximab (IFX) and ustekinumab (UTK), has greatly improved the clinical treatments. The current intravenous dosing scheme, however, yields partial responses with potentially severe systemic side effects. Here, we report that oral prebiotic polysaccharide hydrogels based on inulin and alginate‐dopamine conjugate (predaGel) mediating efficient and sustained colon antibody delivery and reactive oxygen species (ROS) scavenging effectively alleviate IBD. predaGel with pH and enzyme dual responsiveness is stable in the stomach, adhesive to the intestine, and slowly degrading in the colon, resulting in site‐specific and controlled release of IFX. The mucosal retention, ROS scavenging, and gut microbiota remodeling properties endowed by dopamine and inulin in predaGel not only prevent diarrhea and suppress oxidative stress but also prolong drug function and restore immune homeostasis. Intriguingly, oral administration of IFX and/or UTK‐encapsulated predaGel cures IBD and restores colon function, offering an effective oral alternative to IFX injection. This oral prebiotic hydrogel strategy, with simplicity and multi‐functions, presents a potentially safer and better biologic therapy for IBD.]
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20:10:34 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74130-9
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
We present FLOWR.ROOT, an
S
E
(3)-equivariant flow-matching foundation model that unifies pocket-aware 3D ligand generation with multi-endpoint binding affinity prediction (pIC
50
, p
K
i
, p
K
d
, pEC
50
) and pLDDT-based confidence estimation in a single backbone. One trained model supports de novo pocket-conditional generation, interaction- and pharmacophore-conditional sampling, scaffold hopping and elaboration, and fragment growing or replacement, enabled by a mixed isotropic–anisotropic prior placement strategy. Training proceeds in three stages: large-scale pre-training on billions of ligand conformations and millions of mixed-fidelity protein–ligand complexes, refinement on curated co-crystal data, and project-specific adaptation via parameter-efficient LoRA finetuning. Joint structure–affinity modelling enables inference-time importance-sampling guidance for single- and multi-objective design without external scoring functions. Case studies on kinase selectivity (CK2
α
/CLK3) and scaffold elaboration on TYK2, ER
α
, and BACE1 illustrate utility from hit identification through lead optimization.
]
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20:10:34 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75272-6
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Click-polymerized polyenamine membranes for efficient lithium extraction]
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20:10:35 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.13140/rg.2.2.15350.77125
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Thermodynamic Entropy Analysis of Cancer Cell Lines Using Distributed Computing Frameworks]
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20:10:35 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75198-z
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CO2 conversion
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Architecture of the Wza-Wzc complex that mediates colanic acid translocation across the cell envelope in Gram-negative bacteria]
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20:10:36 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75118-1
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CO2 conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Solid-state semiconductor lasers underpin technologies from telecommunications and data storage to sensing, medical diagnostics, and emerging quantum communication. Polaritons, hybrid exciton-photon states, have further extended this reach by enabling room-temperature effects such as low-threshold lasing and strong optical nonlinearities. Organic semiconductors are attractive for polaritonics because of their large exciton binding energies, strong nonlinearities, and compatibility with solution processing. However, while solution-processed organic films have been widely explored, the optical cavities used for organic polariton lasing have typically relied on vacuum deposition, limiting truly scalable, low-cost, and accessible device fabrication. Here, we show that all-dielectric organic microcavities fabricated entirely by solution processing, including both the mirrors and active layer, operate in the strong coupling regime, exhibit polariton lasing, and support reversible, detuning-dependent redistribution of the condensate at high excitation densities, establishing an accessible and tunable platform for nonlinear organic polariton physics.]
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20:10:36 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.3389/fchem.2026.1846850
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [
Motivation
Accurate drug–target interaction (DTI) prediction remains difficult for underexplored drugs and targets, especially when available interaction evidence is sparse. Existing approaches often focus either on pairwise molecular representations or on heterogeneous biomedical graph topology, making it difficult to effectively integrate structure-derived representations with multi-relational contextual evidence.
Result
We propose ColdstartMHDTI, a two-stage framework for heterogeneous-graph-based DTI prediction that integrates sequence-derived structural representations with local and global relational information. Specifically, drug SMILES and target sequences are encoded by pretrained transformer models, while one-hop heterogeneous relations are captured through self-supervised DistMult embeddings. These representations are then fused through a meta-path-guided module that models ordered meta-path instances and aggregates them with cross-attention for interaction scoring. Across two benchmark datasets, ColdstartMHDTI shows consistent improvements under warm-start and entity-disjoint settings, with particularly strong performance for underexplored drugs and targets. It also remains robust under more imbalanced evaluation protocols with 1:5 and 1:10 positive-to-negative ratios. In addition to standard classification performance, ColdstartMHDTI supports candidate prioritization for downstream screening and evidence-guided hypothesis generation. Case studies on ESR1, EGFR, and Parkinson’s disease further demonstrate its practical utility, with the Parkinson’s disease analysis additionally highlighting strong per-drug target ranking performance.
]
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20:10:37 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76330
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20:10:37 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76408
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CO conversion
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Longitudinal, long‐term molecular monitoring is critical for personalized medicine, yet protein adsorption in biofluids rapidly fouls bio‐interfaced sensors and restricts analyte access to sensing regions. Despite advances in antifouling coatings and regeneration strategies, repeated restoration of surface‐enhanced Raman spectroscopy (SERS) sensitivity in static, protein‐rich media remains difficult without degrading nanogap integrity, limiting longitudinal sensing. This work introduces a regenerative molecular sensor based on multiresonant plasmonic nanoprotruding meshes (MPNMs) that co‐localizes SERS sensing and nanocavitation‐based actuation within nanogaps anchored on a biocompatible polymeric mesh. The nanogaps are engineered to support an electric‐dipole resonance for SERS enhancement and a magnetic‐dipole resonance for photothermal conversion, enabling femtosecond‐laser‐triggered nanocavitation within SERS‐active nanogaps. Upon femtosecond‐laser irradiation, collapse of vapor nanobubbles (≈200 ns lifetime) generates thermomechanical forces that detach and displace foulants with micron‐scale precision to regenerate the nanogaps while preserving nanomorphology and optical performance. In undiluted human serum, regeneration restores detection limit for the Pseudomonas aeruginosa virulence factor pyocyanin from 2.0 µ
m
to a clinically relevant 3.9 n
m
after 24 h of fouling. Repeated regeneration cycles enable spatiotemporal profiling of dynamic molecular signatures from P. aeruginosa biofilms in wound models over 24 h, establishing a self‐regenerating platform for longitudinal molecular monitoring in protein‐rich biosystems.
]
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
The potential of pyroptosis in antitumor immunity is well‐established; however, its clinical translation is hindered by the lack of safe and effective pyroptosis inducers. Here, using a high‐throughput screen of 240 antipsychotic agents approved by the Food and Drug Administration (FDA), we identify the antipsychotic agent penfluridol (PF) as a potent inducer of pyroptosis via a previously unreported molecular pathway. Mechanistically, PF directly binds to and inhibits TTI1, leading to activation of the TNFA signaling via NFKB and subsequent caspase‐8/caspase‐3‐dependent cleavage of GSDME, culminating in pyroptotic cell death. Preclinically, PF not only exhibits monotherapy efficacy in immunocompetent hosts but also acts synergistically with anti‐PD‐1 therapy in both transplanted and spontaneous melanoma and HCC models without inducing systemic toxicity. Clinically, low TTI1 expression coupled with activated TNFA signaling via NFKB correlates with improved immunotherapy response and prolonged overall survival, suggesting its potential utility as a predictive biomarker. Collectively, our work establishes a compelling paradigm for repurposing pyroptosis inducers to stimulate antitumor immunity.]
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20:10:37 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74931-y
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
DNA methylation is a critical epigenetic mark across numerous species, and identifying differentially methylated regions (DMRs) is essential for understanding genome regulation. Most existing DMR detection methods require predefined sample conditions, limiting the discovery of new epigenetic patterns, especially when group identities are unknown or uncertain, as is common in clinical settings. Additionally, only a very few approaches enable comparisons across multiple conditions. To address this significant gap, we present metilene
3
, a method for rapid, multi-condition DMR detection that operates in both supervised and unsupervised modes, using user-provided labels or autonomously clustering unlabeled samples. By segmenting the genome based on multiple pairwise methylation difference signals, metilene
3
enables sample classification and DMR-anchored inference of epigenetic relationships. Using simulated and diverse human datasets, we show that metilene
3
accurately detects DMRs, robustly clusters samples, and holds the potential to reveal new regulatory elements and sample stratifications. Specifically, in a pancreatic tissue dataset, metilene
3
identifies DMRs enriched for key transcription factors involved in pancreatic cancer development, hinting towards an altered NFKB-NFAT regulatory program. Together, metilene
3
provides a fast, interpretable framework for exploring heterogeneous methylomes and discovering epigenetic patterns across complex biological and clinical datasets.
]
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20:10:37 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75199-y
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Heinrich Stadials provide insights into a potential future weakening of the Atlantic Meridional Overturning Circulation (AMOC), yet the mechanisms driving AMOC weakening during these intervals remain elusive. While Heinrich Stadials are associated with iceberg-discharge events over the North Atlantic (i.e., Heinrich events), AMOC weakening is known to precede Heinrich events. Here we run freshwater hosing experiments to show that contemporaneous Northeast Pacific iceberg-discharge events (i.e., Siku events), which consistently occur at the onsets of Heinrich Stadials, could trigger AMOC weakening by transporting freshwater to the North Atlantic deepwater formation regions. This initial weakening may subsequently be amplified by further meltwater release from the British and Laurentide Ice Sheets, induced by stepwise subsurface warming in the northeastern and northern North Atlantic. Our findings suggest that Siku events may have played a critical role in preconditioning the North Atlantic for Heinrich events, underscoring the interconnected nature of the global ocean–cryosphere system.]
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20:10:38 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75154-x
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [The BZR1-BLH1-PIF4 feedback module acts as a molecular amplifier for precise thermomorphogenesis in Arabidopsis]
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20:10:38 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74603-x
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Spatial transcriptomic atlas of aggressive osteosarcomas reveals shared immune landscape and targetable surface markers]
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20:10:39 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76307
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Alkaline hydrogen evolution reaction (HER) is limited by slow water dissociation and by catalysts that degrade in saline electrolytes. Here we program vacancies to trigger selective Ni exsolution in multimetallic Prussian blue analogues (PBAs), creating cooperative defect–metal interfaces. Low‐temperature annealing of FeMn@CoNi PBAs forms hollow nanocages (PBA‐350) rich in cyanide vacancies and decorated with in situ exsolved Ni nanoparticles. Operando XRD/XAS, operando impedance, and theory reveal a dual‐site mechanism: vacancy‐stabilized Ni lowers the Volmer barrier, adjacent Co facilitates OH* removal, and the vacancy‐modified lattice tunes H* binding toward thermoneutrality. PBA‐350 delivers 28.4 mV at 10 mA cm
−2
and a 56 mV dec
−1
Tafel slope in 1.0
m
KOH with negligible degradation over 100 h at −50 mA cm
−2
. An anion‐exchange membrane electrolyzer reaches 1.76 V at 1.0 A cm
−2
, and PBA‐350 remains stable in simulated seawater (1.0
m
KOH + 0.5
m
NaCl) by physically repelling chloride ions via hydration layers, establishing vacancy‐assisted exsolution as a design rule for HER.
]
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20:10:40 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.3390/inorganics14070179
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [We demonstrate the molecular beam epitaxy growth of two-dimensional van der Waals ferromagnet Fe3GaTe2 films with precisely controlled thicknesses down to a single unit cell. Magneto-optical Kerr effect microscopy measurements reveal robust room-temperature ferromagnetism with perpendicular magnetic anisotropy persisting across all thicknesses, including finite coercivity in monolayer films. The magnetic domain structures show strong thickness dependence: ultrathin films exhibit near-single-domain states without resolved domain nucleation or domain wall propagation, while thicker films develop complex multi-domain configurations featuring bubble-like domains. These findings underscore the pivotal role of dimensional confinement in modulating the magnetic properties of Fe3GaTe2 and provide critical insights into thickness-dependent phenomena in two-dimensional magnets, advancing their prospects for room-temperature spintronic applications.]
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20:10:40 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76414
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Modern high‐electron‐mobility transistors (HEMTs) and light‐emitting diodes (LEDs) are engineered around epitaxial indium gallium nitride (In
x
Ga
1 − x
N) heterostructures. We apply the highest‐resolution structural, elemental, and optical characterization to a series of systematically fabricated GaN‐on‐silicon (Si) epitaxial heterostructures and demonstrate hitherto unresolved nanoscale optical inhomogeneities in individual In
x
Ga
1 − x
N quantum wells. Direct correlation of atom probe tomography and scanning transmission electron microscopy with cathodoluminescence collectively confirms that these optical inhomogeneities result from compositional segregation that only appears in high indium‐content In
x
Ga
1−x
N specimens, but not in low indium‐content quantum wells, thereby elucidating the origin of injection‐current‐induced blueshifts in long wavelength LEDs. Density functional theory (DFT) calculations of the various alloy mixing energies indicate that the relaxation of the epitaxial in‐plane strain stabilizes specific In
x
Ga
1−x
N compositions. Our findings suggest that proper use of strain management and careful selection of alloy compositions are necessary to control local phase separation. This work presents a path to high‐mobility strain engineering in HEMTs and homogeneous, long‐wavelength light emission in LEDs.
]
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20:10:41 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75320-1
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Widespread controls of precipitation sensitivity on drought recovery of global forests]
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20:10:41 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74869-1
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Complementary roles of cell-type-specific plasticity in shaping neocortical dynamics for learning action timing]
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20:10:42 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76403
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Soft robotic grippers, with their intrinsic compliance and dexterity, provide safer manipulation of soft and fragile items compared to traditional rigid ones. However, achieving high functional integration within a single soft gripper, particularly for cross‐scale, multi‐particle, and high‐load manipulation, remains a major challenge. Here, a monolithically 3D‐printed, rapeseed‐flower‐inspired self‐reconfigurable soft gripper (SRSG) is presented, which can rapidly reconfigure its finger arrangement within ∼130 ms and achieves precise, reversible switching between diagonal and parallel configurations. The SRSG can be readily incorporated with detachable petal modules to alter the grasping workspace. Leveraging these capabilities enables a range of functions: rotating bulbs of varying diameters, picking fruits, grasping cross‐scale objects ranging from 0.07 to 270 mm (grasping range ratio of ∼3857 times), lifting payloads up to 5.6 kg (∼106 times its own weight), and adaptively enveloping numerous fine particles, multiple live aquatic organisms, and fragile underwater targets. The fully soft, electronics‐free SRSG establishes a self‐reconfigurable grasping paradigm for robust operation in unstructured environments, and opens up new directions for soft robotic end‐effectors.]
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20:10:43 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76407
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CO2 conversion
CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
High‐strength lightweight refractory alloys are vital components serving in harsh environments with high mechanical loads at elevated temperatures, e.g., in aero‐engines and hypersonic vehicles. Despite the long‐term efforts on strengthening these materials, they usually show low ductility, particularly at room temperature, severely limiting their practical applications. Here, we introduce a concept to design extraordinarily ductile high‐strength lightweight refractory high‐entropy alloys (RHEAs) by introducing dispersed chemically gradient ordered nanodomains (CGONs, 1–3 nm) coherent with the disordered matrix. Chemical composition of the shell in the CGON is similar to that of the adjacent disordered matrix, and it varies gradually from the shell to the core. Such architecture not only enhances the thermodynamic stability of the CGONs but also facilitates stress transfer across the interfaces by reducing interfacial strain energy. The concept is realized in an Nb‐Zr‐Ti‐Ta‐Al RHEA system showing low mass density of 6.48 g/cm
3
, large uniform tensile elongation of 21.5%, elongation‐to‐failure of 47.8%, and high yield strength exceeding 1.0 GPa at room temperature. Further, the enhanced thermal stability of the CGONs contributes to the excellent high‐temperature performance of the lightweight RHEA. The provided insights are thus important in guiding the development of ductile and ultra‐strong lightweight refractory materials for key engineering applications.
]
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20:10:43 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.31223/x52z12
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CO2 conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Industrial point sources of ammonia (NH₃) and ethylene (C₂H₄) are poorly constrained in current inventories, in part because satellites tend to offer either fine spatial detail or frequent revisits. We show that the two thermal-infrared bands of the Landsat 8 and 9 Thermal Infrared Sensor (TIRS), though built for land-surface monitoring, can detect and spatially resolve such plumes at 100 m resolution. Using a B10/B11 band-ratio method at five facilities in Iraq, Oman, the United Arab Emirates, and Saudi Arabia, we identified hundreds of plumes over 2021–2025 that recur in most months, pointing to persistent rather than sporadic emission. Because TIRS cannot spectrally separate the two gases, we attribute them from the known source type, corroborated by IASI and hyperspectral cross-checks: Landsat detections agree with morning IASI overpasses on two-thirds to three-quarters of co-observed days, and a near-simultaneous EMIT overpass over the Iraq fertilizer plant confirms that the band-ratio signal follows genuine NH₃ enhancements. Crucially, Landsat resolves individual units that IASI blends into a single column, and its open, multi-decade archive reconstructs facility-level emission histories, with plumes traceable back to 2015, complementing hyperspectral imagers and pointing toward routine, facility-scale monitoring.]
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20:10:44 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75190-7
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Author Correction: Economical biogas direct methanation to pipeline grade natural gas via structured Ni based inverse catalyst]
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20:10:44 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75171-w
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CO2 conversion
CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Ridge catalysis unlocking water oxidation activity of pentlandite]
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20:10:45 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.13140/rg.2.2.16813.86247
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [BACO 2026 Presentation]
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20:10:47 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76404
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CO2 conversion
CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Correction to “Multifunctional Tailoring of Fertilizer Composites Directly Derived From Phosphate Rock”]
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20:10:51 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.13140/rg.2.2.24783.04008
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CO conversion
Chemicals used as sacrificial electron donor
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [four-states-as-trace-regimes]
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20:10:51 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s42003-026-10633-x
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Despite strong theory linking parasite life history to virulence and transmission, how parasite strategies affect host responses remains poorly understood. Here, experimental evolution and RNA-sequencing were combined in the mosquito–microsporidian system
Anopheles gambiae–Vavraia
culicis to test whether parasite lineages selected
for
early or
late
transmission differ in the host responses they elicit.
Early
lineages were selected from hosts that died early in infection, whereas
late
lineages were selected from hosts that died later, generating parasite populations that differ in growth, virulence and environmental persistence. Mosquitoes were infected with evolved parasite lineages and sampled at a common sporulating stage. A
reference
infection response was defined relative to
uninfected
controls.
Early
- and
late
-selected parasites showed consistent, yet partly distinct, changes in host gene expression. Co-expression network analysis identified gene modules whose activity covaried with parasite traits, including virulence and environmental persistence. One module enriched for tissue maintenance and metabolic functions was negatively associated with virulence, consistent with reduced damage. Another module enriched for membrane and signalling functions was positively associated with environmental persistence, suggesting that host state at transmission may influence the environment in which transmission stages develop. Together, these results identify distinct host states linked to parasite life-history variation.
]
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20:10:53 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/celc.202500484
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [With the rapid increase in demand for smart, wearable and flexible electronics, sustainable and high‐performing energy storage devices have received enormous attention. In general, electrode materials are supported over metal‐based scaffolds such as nickel/copper foam or stainless steel. However, their insufficient mechanical flexibility, higher mass density and high susceptibility towards corrosion limit their applications in electrochemical energy storage devices. In contrast, carbon cloth (CC) emerged as a potential scaffold material owing to its light weight, high flexibility, mechanical robustness and chemical inertness. Flexible CC‐based supercapacitors are highly demanding when compared with secondary batteries. Moreover, due to the rigid nature of current commercial batteries, it is difficult to integrate them into flexible and wearable applications, whereas CC‐based supercapacitors can be easily integrated into flexible and wearable devices. The inherently hydrophobic CC surface can be activated or modified further with nanomaterials using several methods, with each approach having some advantages and disadvantages, playing a significant role in impacting energy storage performance. Here, we discuss some methods used to activate/hydrophilize the CC and the impact of synthesis parameters on morphology, crystallinity, mass loading and overall electrochemical performance. Key applications and critical aspects that still require attention to achieve optimal performance are discussed with the cost metrics necessary for widespread adoption are highlighted.]
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20:10:53 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.3390/inorganics14070180
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [In sulfide-based all-solid-state battery (ASSB) composite cathodes, incomplete solid–solid contact and tortuous ionic/electronic transport pathways increase internal electrode resistance and complicate the interpretation of apparent impedance responses. Here, we present a distribution of relaxation times (DRT)-assisted phenomenological impedance approach for analyzing apparent impedance responses in terms of operational resistance components in composite cathodes based on LiNbO3-coated Ni-rich layered oxide cathode active materials. Electrochemical impedance spectroscopy was performed under controlled electrode loading, state of charge (SoC), and temperature conditions. Loading-dependent DRT analysis parameterized the apparent impedance response into five operational resistance components. The high-frequency components remained nearly unchanged or increased with increasing loading, whereas the mid- to low-frequency components generally decreased, suggesting opposite loading dependences between components tentatively associated with electrode-structural constraints and interface-related processes. SoC-dependent analysis compared relatively SoC-insensitive and SoC-sensitive operational components, while temperature-dependent analysis provided additional comparative constraints for their proposed operational interpretations by comparing their apparent activation energies. Based on these operational component correlations, a semi-empirical framework was developed to describe how the loading-dependent evolution of the DRT-deconvoluted components is reflected in the apparent impedance response. This framework helps reduce the risk of misinterpreting apparent impedance as a uniquely defined interfacial resistance and provides a practical basis for diagnosing structural limitations in high-loading ASSB composite cathodes.]
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20:10:53 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74917-w
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Oral microbiome modulation mitigates hyperglycemia exacerbation in gestational diabetes mellitus]
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20:10:54 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75091-9
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CO2 conversion
CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
For autonomous systems to operate safely and reliably in dense traffic, they must perform trajectory prediction with human-like, interpretable reasoning. Prevailing data-driven “black-box” models fundamentally lack this capability. This research proposes a paradigm shift toward embodied intelligence, unifying cognitive science principles into a hierarchical framework: a Scene Attention Mechanism for threat prioritization, Social Impact Theory-driven graphs for intent inference, and a physics-compliant Social Force Model. Experimental results demonstrate that our framework reduces average displacement error by 42% and Final Displacement Error by 40% compared to existing state-of-the-art models on ETH and UCY, while enabling near-real-time inference (0.003 s). Crucially, the model’s interpretable architecture, which is validated through risk-sensitive heatmaps and graph visualizations, reveals how agents dynamically balance safety, efficiency, and socio-cultural norms. Beyond performance gains, this work constructs an interpretable bridge between computational models and human cognitive science, laying a foundation for trustworthy autonomous systems.]
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20:10:54 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.13140/rg.2.2.21742.16968
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CO2 conversion
CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [THE INFORMATIONAL MECHANICS OF CHROMATIN PACKING: MAPPING EPIGENETIC MEMORY AND TRANSCRIPTIONAL CONTROL VIA THE HAMOUDA INFORMATIONAL GRAVITY MODEL (HIGM)]
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20:10:55 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75095-5
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Parenting behaviours are often linked to childhood aggression, but many studies fail to account for shared genetics or test directionality. Using family-based designs, we control for genetic confounding and examined bidirectional effects across two samples. First, we apply a children-of-twins/siblings design in the Norwegian Mother Father and Child Cohort Study which uses genetic relatedness between family members to separate genetic and environmental components of parent-child associations. Second, we use longitudinal models in the USA-based Early Growth and Development Study, an adoption sample where parents and child are not genetically related, enabling estimation of parent-child associations without genetic confounding.
Across both studies, we find evidence for genetic and environmental transmission between parenting and child aggression. We show significant child-to-parent effects on inconsistent discipline in both samples. In the children-of-twins analysis, the association between positive parenting and child aggression is shown to be due to shared genetics, where no statistically significant association is observed in the adoption sample. These findings build on the growing body of literature showing genetic influences on both aggression and parenting behaviours, whilst underscoring the value of triangulation.]
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20:10:56 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s42003-026-10617-x
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Prospects of DNA nanotechnology in stroke repair and regeneration]
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20:10:56 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s42003-026-10603-3
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Recombining regions of sex chromosomes, pseudoautosomal regions (PARs), are essential for proper segregation of the sex chromosome pair during meiosis. Yet, the evolutionary dynamics of PARs remain poorly understood, particularly in relation to chromosomal translocation and fusion events. Using comparative analyses of enlarged neo-sex chromosomes across Sylvioidea songbirds, we show that the ancestrally conserved songbird PAR has independently ceased recombining multiple times, each coinciding with the emergence of novel PAR in newly sex-linked regions. These PAR transitions were associated with lineage-specific fusions, but were driven by subsequent recombination suppression events rather than the fusions themselves. Our data further support hypotheses predicting that recombination suppression expansions are preceded by sex-associated sequence divergence near the PAR boundary. Together, our results reveal remarkable PAR diversity among birds and demonstrate how chromosome fusions relax constraints on existing PARs, facilitating recombination suppression and enabling PAR transitions along evolving sex chromosomes.]
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20:10:57 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/celc.70267
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CO2 conversion
CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [
Organic electrosynthesis has emerged as a powerful strategy for leveraging electricity in organic synthesis. Despite its growing popularity, the fundamental molecular interactions governing electrochemical systems remain poorly understood. Many electrosynthetic reactions show strong dependence on the identity of the allegedly inert supporting electrolyte, which can significantly impact yields and selectivity, yet the physical origins of these effects are largely unexplored. A mechanistic understanding of electrolyte effects would enable more rational reaction design for applications. Here, we use cyclic voltammetry to investigate cobalt‐based metal–carbon bond homolysis and elucidate how common supporting electrolytes influence reaction rates. Bulk electrolysis experiments further reveal how electrolyte choice affects overall selectivity. Peak‐ratio analysis indicates that Co(Salen)–benzyl bond cleavage proceeds via a reversible homolysis mechanism that becomes rate‐limited by bond dissociation at high substrate concentrations. The reaction rate varies systematically with electrolyte identity, and changes in oxidative addition rates are quantified using simulations. These experimental findings are supported by
ab initio
and classical molecular dynamics simulations, as well as density functional theory calculations, which provide insights into reaction pathways, energetics, and dynamics. Together, these results demonstrate that electrolyte selection enables rational tuning of reaction rates and downstream selectivity, highlighting the critical role of electrolytes in metal‐catalyzed organic electrosynthesis.
]
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20:10:57 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75188-1
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CO2 conversion
CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Levitated macroscopic rotors with 10 hours of free spin at room temperature]
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20:10:58 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74842-y
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Water exchange process and bulk composition regulate slab dynamics and deep earthquakes]
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20:10:59 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74957-2
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Brain maintenance – the preservation of brain structure or function relevant to cognitive performance – remains challenging to quantify. Here, we propose a domain-general brain maintenance index derived by jointly modelling the longitudinal co-evolution of ageing-related atrophy (via medial temporal lobe to ventricle ratio, MTLV-ratio), white matter hyperintensities (WMH), and global cognition assessed by the preclinical Alzheimer’s cognitive composite (PACC5) using latent growth curve modelling. We demonstrate its utility in 543 cognitively unimpaired older adults from the DELCODE cohort, followed annually over four years. We show that changes in MTLV-ratio and WMH additively predict cognitive change. We further show that higher neuroticism, depressive symptoms, lower openness, and faster biological ageing are related to unfavourable domain-specific trajectories and poorer brain maintenance. Our findings highlight the combined relevance of WMH and ageing-related atrophy dynamics for brain maintenance. Maintaining cerebrovascular and mental health alongside cognitive engagement could promote brain maintenance, delay cognitive decline and dementia.]
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20:11:00 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76206
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Correction to “A Novel Magnetic Responsive miR‐26a@SPIONs‐OECs for Spinal Cord Injury: Triggering Neural Regeneration Program and Orienting Axon Guidance in Inhibitory Astrocytic Environment”]
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20:11:00 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.13140/rg.2.2.10129.19049
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
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Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [BENZENE-Polarity, Neutrality & Chemical Reactions]
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20:11:01 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75253-9
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
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Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [The H3K4 methyltransferase KMT2D is an essential cofactor for GATA1 at erythroid gene enhancers]
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20:11:01 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74173-y
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CO conversion
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Morphogenetic mechanical metamaterials: Emerging tensor properties from self-organized structures]
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Fermentative iron reduction by a psychrotolerant Clostridium-dominant consortium enriched from Antarctic penguin-impacted soils]
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20:11:02 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74862-8
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Photocatalytic CO2 conversion
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Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
DNA primases synthesize short primers required for genome replication, yet the mechanism of initial dinucleotide formation remains poorly understood. Here, we investigate the primase encoded by the pRN1 plasmid from the thermoacidophile archaeon
Sulfolobus islandicus
, a minimal model for primer synthesis. Using nucleotide analogues to slow the reaction, we capture transient intermediates of dinucleotide formation. Structural NMR and modeling reveal that the ancillary domain simultaneously binds the DNA template and two initiating nucleotides. Unexpectedly, only the second nucleotide base-pairs with the template, whereas the first remains unpaired, inducing template-base flipping and linker interaction. This interaction promotes a closed conformation in which the second nucleotide moves from the initiation to the elongation site and the first forms a base pair in the initiation site, positioning both nucleotides for catalysis. These findings reveal a mechanism for template recognition, nucleotide assembly, and proofreading during primer initiation that is likely conserved among primases.
]
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20:11:03 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.5194/egusphere-2026-3365
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract. MethaneSAT, launched in March 2024, was designed to quantify regional methane (CH4) emissions, with a primary focus on the oil and gas (O&G) sector. The satellite mission bridges the gap between coarse-resolution global flux mappers and high‑resolution plume imagers by combining fine spatial resolution (~110 x 400 m2 pixels at nadir), high spectral resolution (~0.23 nm FWHM), and a ~220 km swath at nadir. In this study, we present the first operational retrievals of CH4 column-averaged dry-air mole fractions (XCH4) using the CO2‑proxy method. We assess the instrument and retrieval algorithm performance relative to the mission's precision and accuracy requirements needed to constrain CH4 emissions at the scale of individual O&G basins. We focus on evaluating the retrieval against four major potential sources of systematic error: albedo dependent CH4/CO2 column retrieval sensitivity differences, cross-track stripe biases, aerosol-induced light path errors, and subscene CO2 variability. Tuning the a priori covariance matrix suppresses albedo-dependent errors caused by the influence of priors to sub ppb levels. Through a careful selection of homogeneous validation targets, we show that XCH4 cross-track biases strongly correlate with changes in the apparent instrument spectral response function (ISRF). We develop a stripe-correction algorithm using retrieved ISRF variations in a regression model combined with wavelet-Fourier filtering to reduce stripe noise from approximately 15 ppb standard deviation to near the random noise limit. Analysis of the homogeneous validation scenes shows that single-pixel precision is approximately 30 ppb for conditions from a typical bare-ground O&G scene (0.4 albedo, 30° SZA), corresponding to ~3 ppb at 2 x 2 km2, and thus well within the mission requirement of 3 ppb at 5 x 5 km2. This requirement is also met for all targeted viewing geometry/albedo combinations. Comparisons with XCH4 from TROPOMI show excellent agreement, with a mean bias of 0.1 ppb and a regression slope of 0.99 when using XCO2 from the CAMS greenhouse gas forecast as the prior in place of the GINPUT prior used operationally. The spatial pattern of Permian basin XCH4 enhancements between the two instruments is highly consistent. Observations of a Pseudo-Invariant Calibration site in Libya confirm that the CO2-proxy approach effectively mitigates biases induced by cloud and aerosol scattering, with subscene XCO2 variability emerging as the most challenging remaining error source; gradients of a few ppm can lead to XCH4 errors comparable to typical basin enhancements, though such conditions appear infrequent in both MethaneSAT observations and CAMS GHG forecast simulations. Overall, MethaneSAT retrieves XCH4 with the precision and accuracy required for basin-scale emissions inversion. These results suggest that the CO2-proxy approach remains the most viable retrieval approach for regional CH4 emission mapping, with improved treatment of subscene XCO2 variability representing the key priority for future work.]
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
The treatment of Alzheimer's disease (AD) is severely hampered by the blood‐brain barrier (BBB), which limits the delivery of therapeutic agents like donepezil (DPZ), an acetylcholinesterase inhibitor. While DPZ has multi‐faceted benefits, its clinical efficacy is constrained by poor BBB penetration, requiring high doses that lead to significant side effects. To overcome this, we developed a brain‐targeted nanotherapeutic utilizing apoferritin (AFn) nanoparticles loaded with DPZ (AFn‐DPZ). We demonstrate that this platform, by binding to the EphB1 receptor on the blood–brain barrier, enables transient and reversible opening of the blood–brain barrier, thereby facilitating efficient and targeted drug delivery. Following intravenous administration in an AD mouse model, AFn‐DPZ exhibited enhanced brain accumulation and sustained release of DPZ. This targeted delivery inhibited acetylcholinesterase activity, reduced amyloid plaque burden, alleviated neuroinflammation, attenuated oxidative damage, restored mitochondrial function, and upregulated the expression of brain‐derived neurotrophic factor (BDNF). Consequently, AFn‐DPZ treatment significantly improved cognitive performance compared to free DPZ. Our findings establish EphB1‐mediated facilitation of BBB traversal as a promising strategy for enhancing nanotherapeutic delivery to the brain, offering a potent approach to address the complex pathology of AD.]
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20:11:03 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75016-6
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Direct extraction of bromine from seawater through an electrolysis-driven styrene enrichment process]
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20:11:03 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75271-7
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Ataxia Telangiectasia Mutated (ATM) kinase deficiency results in cancer susceptibility and drug hypersensitivity. Deficiency in either the BRCA1 interacting A complex or XRCC4/Ligase 4 confers resistance to Topoisomerase I or PARP1 inhibitors in ATM-deficient cells. This suggests that BRCA1-A directs toxicity to fork-damaging agents in ATM mutated cells via illegitimate end-joining. Here, we show that ATM inhibition triggers combined SUMO and ubiquitin mediated BRCA1-A damaged fork recognition to restrict end-resection and cause Topoisomerase I inhibitor hypersensitivity. BRCA1-A deficient cells display elevated chromatin accessibility and nuclease activity at damaged forks, coupled with restored resection and drug resistance. Electron microscopy evidence demonstrates that ATM inhibition prevents replication fork reversal, which is restored by BRCA1-A loss to generate substrates for end resection. These findings reveal that BRCA1-A enforces a restrictive chromatin state to suppress the genesis of resection substrates, implicating fork reversal as a key determinant of chemotherapy response in ATM deficient cells.]
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20:11:04 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76364
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Osteoarthritis (OA) is a progressive and disabling joint disease driven by oxidative stress, chondrocyte senescence and extracellular matrix (ECM) degradation, yet lacks effective disease‐modifying treatments. In this study, we identified miR‐197‐3p as a previously unrecognized, cartilage‐protective miRNA significantly downregulated in both aged and osteoarthritic cartilage. Functional studies revealed that miR‐197‐3p restores ECM anabolism, suppresses senescence and directly targets G3BP1, a stress granule protein linked to redox imbalance and inflammatory signaling. To enable effective intra‐articular delivery, we engineered a multifunctional microsphere platform (miR/PBNP@Gel) by co‐encapsulating miR‐197‐3p and ultrasmall Prussian blue nanozymes (PBNPs) into GelMA hydrogel microspheres. This composite design synergistically enhances miRNA stability, facilitates cellular internalization and provides continuous reactive oxygen species (ROS) scavenging to protect mitochondrial function. miR/PBNP@Gel reversed mitochondrial dysfunction and senescence in OA chondrocytes, while promoting cartilage repair and joint function in vivo. Metabolomic profiling further revealed reprogramming of TCA cycle and antioxidant pathways. This work established miR‐197‐3p as a novel therapeutic regulator in OA and introduced a bioinstructive, injectable, and cell‐free strategy that integrates miRNA therapy and redox modulation for disease modification and cartilage regeneration.]
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20:11:04 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76394
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Photocatalytic CO2 conversion
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Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Human induced pluripotent stem cell (iPSC)‐derived dopaminergic progenitors offer a promising strategy for cell replacement in Parkinson's disease (PD), yet their long‐term efficacy and safety in primates remain underexplored. Here, we generated isogenic iPSC lines from a PD patient carrying compound LRRK2 mutations (R50H and M2397T) and used CRISPR/Cas9 and prime editing to correct these variants. Both mutant and gene‐corrected lines were differentiated into midbrain dopaminergic progenitors (DA‐NPCs), characterized in vitro, and transplanted bilaterally into the striatum of MPTP‐lesioned cynomolgus monkeys. Over 18 months, grafted cells survived, expressed TH and GIRK2, and exhibited mature electrophysiological properties. [
1
8
F] DOPA PET imaging revealed restored dopamine synthesis in both grafting groups, with no statistically significant differences observed between mutant and gene‐corrected groups. Behavioral assessments showed sustained motor improvements and enhanced exploratory behavior. No tumor formation or adverse astrocytic response was observed, and systemic safety markers remained normal. These findings demonstrate that both mutant and corrected DA‐NPCs integrate and function in the primate brain. Our results support the feasibility of personalized regenerative therapies for genetic PD.
]
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20:11:04 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75127-0
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Mucinous colorectal carcinoma (MUC CRC) metastasis to multiple organs, and to the peritoneum, is associated with poor prognosis. Disseminating MUC CRCs exhibit either conventional (apical-in) or inverted (apical-out) polarity that influence patient outcomes. Therefore, it is critical to identify how MUC CRC polarity is regulated. Here, we analyze patient-derived MUC CRC xenografts with either apical-in or apical-out polarity. Single-cell analyses reveal α2β1-integrin as a key collagen-binding receptor in these models. Collagen–α2β1-integrin interaction activates Src and upregulates SorLA, an endosomal sorting receptor. SorLA supports apical-in polarity by promoting integrin recycling and HER2/HER3 expression. We observe positive correlation between HER2, HER3 and SorLA in patient samples and higher HER2 expression in apical-in-presenting tissues. Clinically relevant HER2/HER3-targeting antibodies revert tumor sphere polarity, and impede collagen remodeling and adhesion to mouse peritoneum. This SorLA—integrin—HER2/HER3 axis could represent a MUC CRC-patient stratification approach and be relevant for other carcinomas with apical-out phenotypes.]
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20:11:04 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76317
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Metal organic frameworks (MOFs) have attracted increasing attention in composite solid electrolytes (CSEs), attributed to the tunable pore structures and good thermal and electrochemical stability. However, MOFs‐based CSEs still exist, with a trade‐off between ionic conductivity and lithium dendrite inhibition ability. Herein, 420 nm ultrathin ZIF‐67 layer on polyvinylidene fluoride‐co‐hexafluoropropylene (PVDF‐HFP) membrane is precisely regulated through the interfacial growth method. The organic ligand 2‐methylimidazole permeates through the straight‐through pore of PVDF‐HFP to react with Co
2+
, which controls the reaction rate to form ultrathin and dense ZIF‐67. The CSE with ultrathin and dense ZIF‐67 layer not only reduces Li
+
transport resistance but also promotes lithium salts disassociation, contributing to an ionic conductivity of 2.70 mS cm–
1
at 30°C and Li
+
transference number of 0.71. Meanwhile, the ultrathin ZIF‐67 induces fast Li
+
transport kinetics, uniform Li
+
flux, and homogeneous Li deposition, synergizing with high mechanical strength to inhibit lithium dendrite growth. As a result, the NCM811||Li coin battery shows improved cycling performance with a capacity retention of 70% after 446 cycles at 0.5 C and is capable of working at −20°C. This work proposes an innovative design of ultrathin MOFs‐based CSEs with high ion conductivity and low interfacial conduction resistance.
]
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20:11:05 2002565 CrossRefSearchJob - CrossRefSearchJob with doi 10.5194/epsc2026-929
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Stars and planets form in dense cores within molecular clouds. These cosmic nurseries are where we see the first formation of interstellar ices. Composed mainly of H2O, CO2 and CO, these ice species and their reaction products are the likely precursors to the complex organic molecules (COMs) that enable the development of life on planets such as our own. Yet their origin and evolution, and the survival of the volatile material trapped within them through the violent star formation process, remain poorly understood. This fundamentally limits our ability to determine how molecules of great astrobiological significance are delivered to planetary bodies. Figure 1: The likely dominant fractionation mechanisms that determine the carbon isotope ratio imprinted in the ice observed in pre- and protostellar environments.The 12C/13C ratio is a sensitive probe of the physical and chemical conditions under which carbon-bearing ices form and evolve. The initial ratio is set by the distinct origins of the two isotopes: 12C is produced rapidly in massive stars, while a fraction of 12C is converted to it’s weaker counterpart 13C via the CNO cycle in later stellar generations. After injection into the interstellar medium (ISM), fractionation processes enrich or deplete one isotope relative to the other. In star-forming regions the isotope fractionation is driven by a combination of gas-phase and grain-surface processes that dominate during different physical and chemical epochs. For the abundant carbon-bearing ices, CO and CO2, the isotope ratio is therefore thought to preserve a chemical memory of the environment in which they formed, making it a valuable diagnostic of chemical evolution across the star-forming process. Understanding carbon isotope fractionation can shine a light on the inheritance or in-situ formation of molecules during different stages of star and planet formation. If the fractionation patterns established in molecular clouds are preserved through the protostellar phase, they may be inherited by protoplanetary disks and ultimately by planetary bodies. Conversely, if isotope ratios are significantly reprocessed during star formation, they instead reflect local conditions rather than primordial inheritance. Distinguishing between these scenarios has important implications for tracing the chemical origin of complex molecules across evolutionary stages, from cold molecular clouds to protostellar environments and planetary systems. Figure 2: JWST WFSS observations allow us to obtain spectra along lines of sight towards tens to hundreds of background sources in a single observation.The unrivalled sensitivity and multiplexing capabilities of The James Webb Space Telescope (JWST), now allows us to probe the chemical environment across star-forming regions with a resolution like never before. I will present 12C/13C ratios derived from JWST NIRCam Wide Field Slitless Spectroscopy (WFSS) observations towards the Chamaeleon I molecular cloud, obtained as part of the Ice Age Early Release Science programme (PID 1309; P.I. M. McClure). Spectra were extracted for 33 background sources along pencil-beam lines of sight through the cloud, in the vicinity of the deeply embedded class 0 protostar Cha MMS1, providing the largest sample of co-spatial ice isotope measurements within a single star-forming region to date. I will examine whether the carbon isotope ratio varies between ice species, whether it shows spatial dependence across the cloud, what this tells us about the chemical evolution across the region, and how the values derived in this study relate to those observed across the broader star and planet formation sequence.]
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20:11:05 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75237-9
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Sub1 contributes to heart failure with preserved ejection fraction driven by aging in mice]
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20:11:06 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.5194/epsc2026-474
20:11:06 2002658 AIClient - Request to AI with prompt: 'Given the following abstract of the publication, is it relevant to any of the following subcategories?
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [IntroductionThe icy Galilean moons — Europa, Ganymede, and Callisto — are major targets in the search for habitable environments because they likely harbor subsurface oceans beneath their icy crusts. Assessing their habitability requires understanding the origin and evolution of complex organic molecules (COMs), which are key precursors of prebiotic chemistry.Although COMs have not yet been directly detected on the Galilean moons, upcoming missions such as ESA’s JUICE and NASA’s Europa Clipper will provide new constraints on the abundance and distribution of organics, salts, and volatile ices through infrared, submillimeter, and mass spectrometry observations.While the formation and transport of COMs have been extensively studied in protoplanetary disks, their evolution within circumplanetary disks (CPDs), where giant-planet satellites form, remains poorly understood. COMs inherited from the protosolar nebula may have been altered or destroyed during transport into Jupiter’s CPD, while the CPD itself may also have enabled in situ organic synthesis through thermal and photochemical processing of icy particles.This study investigates the formation and transport of COMs in Jupiter’s evolving CPD using a time-dependent disk model coupled to particle transport calculations. Two formation pathways are explored: thermal processing of NH3:CO2 ices [1] and UV photochemistry of CH3OH-rich particles [2]. The goal is to determine under which conditions COMs can form, survive, and become incorporated into the Galilean moons.MethodologyThe study employs a two-dimensional gas-starved model of Jupiter’s CPD, which evolves from a hot, massive disk to a colder and less dense configuration as Jupiter’s accretion rate decreases with time. The nominal model assumes an initial accretion rate of 6.6 × 10−6MJ yr−1, a depletion timescale of 20 kyr, a turbulent viscosity parameter α = 10−3, and a centrifugal radius of 50 RJ. The thermodynamic structure of the CPD is controlled by viscous heating, radiative cooling, and irradiation from a young Jupiter with a surface temperature near 2000 K. The model naturally produces shadowed regions that can cool the disk locally by up to 100 K.Particle transport is modeled using a Lagrangian framework accounting for gas drag, turbulence, diffusion, and settling. Simulations track particles ranging from 1 μm to 1 cm released at different epochs and locations within the CPD. Two COM formation pathways are explored: thermal processing of NH3:CO2 ices between 80 and 260 K, and UV photochemistry of CH3OH-rich ices. UV fluence is computed self-consistently along particle trajectories while accounting for attenuation by gas and dust opacity.The simulations therefore couple disk evolution, particle transport, irradiation exposure, and ice chemistry to determine where and when COMs can form and survive within Jupiter’s CPD.ResultsThe simulations show that thermal processing dominates COM formation within Jupiter’s CPD. Particles drifting inward through the disk systematically cross regions with temperatures between 80 and 260 K, where NH3:CO2 ices are efficiently converted into COM-bearing material within a few hundred years.At early epochs (t0 = 50 kyr), particles smaller than 1 mm remain strongly coupled to the gas, while larger particles rapidly migrate inward due to gas drag. Figure 1 shows that many trajectories intersect the thermal COM formation zone located between ~20 RJ and the centrifugal radius. In contrast, UV-driven chemistry is much less efficient. CH3OH-rich particles generally sublimate before accumulating sufficient UV fluence to trigger substantial photochemical COM formation. Only a limited fraction of small particles released late in the disk evolution reach irradiation thresholds derived from laboratory experiments. As the CPD evolves and gas densities decrease, particle-gas coupling weakens and even micron-sized grains drift inward. The thermal processing region simultaneously migrates closer to Jupiter, but particles continue to experience efficient thermal processing before significant UV irradiation occurs.The simulations also show that increasing particle density, turbulent viscosity, or lowering the disk accretion rate further suppresses irradiation-driven chemistry by shortening particle residence times within the disk. Overall, the results indicate that thermal processing of NH3:CO2 ices is the dominant COM formation pathway in Jupiter’s CPD, whereas UV photochemistry plays only a secondary role under nominal conditions.Fig. 1. Median radial trajectories of 1 µm, 100 µm, 1 mm, and 1 cm particles as a function of time in our nominal CPD model. The particles are released one scale height above the CPD midplane at t0 = 50 kyr. Particle trajectories are computed in both the radial and vertical directions, but only their projection onto the CPD midplane is shown here for clarity. Median trajectories are shown at 10 Rjup intervals in the midplane, spanning from 5 to 135 Rjup in the CPD. Dotted lines highlight portions of these trajectories that intersect the COM formation zone via thermal processing in the CPD. The horizontal dotted-dashed line indicates the location of Rc.ConclusionsThis study shows that COMs can form efficiently within Jupiter’s CPD through thermal processing of icy particles drifting through warm disk regions. In contrast, UV-driven photochemistry is generally inefficient because particles sublimate before accumulating sufficient irradiation doses.The results suggest that the Galilean moons may have inherited part of their organic inventory directly from the CPD, although COM survival strongly depended on local thermal conditions and accretion histories. The hotter inner disk likely destroyed most organics incorporated into Io and possibly Europa, whereas the colder formation environments of Ganymede and especially Callisto favored preservation of COM-rich material.The study also highlights the need for improved laboratory photochemical data and more comprehensive chemical models, including mixed-ice chemistry and grain-surface processes.Overall, the results indicate that thermal processing within Jupiter’s CPD could have generated and preserved organics later incorporated into the Galilean moons. Future observations from JUICE and Europa Clipper will provide key constraints on the origin and survival of organics within the Jovian system. All results and interpretations are presented in [3]. References[1] Bossa, J. B., et al. 2008, A&A, 492, 719, doi: 10.1051/0004-6361:200810536[2] Tenelanda-Osorio, L. I., et al. 2022, MNRAS, 515, 5009, doi:10.1093/mnras/stac1932[3] Mousis, O., et al. 2026, PSJ, 7(2), id.41, doi:10.3847/PSJ/ae3559]
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20:11:06 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76366
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Photoacoustic tomography is uniquely capable of high‐resolution deep‐tissue blood‐oxygenation (sO
2
) imaging (oximetry) due to its optical absorption contrast. However, wavelength‐dependent optical fluence changes within tissue, i.e., spectral coloring, have impeded the development of photoacoustic oximetry. We present the arterial prior method (APM+; + denotes intravascular fluence correction), which leverages the high arterial sO
2
to locally calibrate the optical fluence within tissue to circumvent spectral coloring and reliably estimate the sO
2
near the artery. In phantom experiments with ex vivo animal tissue, APM+ resulted in a median estimation error of 2.9% compared to 9.8% from the traditional linear unmixing method (LUM). In human imaging experiments of the radial artery‐vein pair in eight healthy adult volunteers, the estimated venous sO
2
s from APM+ (median: 72.3%, interquartile range/IQR: 8.9%) were concentrated around the typical 60%–80% range in healthy individuals, whereas those from LUM (median: 75.2%, IQR: 34.4%) varied widely. When imaging the wrists of the eight subjects through ex vivo animal tissue of thicknesses up to 1.5 cm, APM+ provided more consistent estimates than LUM, indicating its robustness with depth.
]
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20:11:06 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s42003-026-10606-0
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CO2 conversion
CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Depression involves dysregulation across distributed cortico-limbic circuits, and ketamine is notable for its rapid antidepressant effects. Although depression and ketamine treatment have been linked to altered brain network topology, how within-frequency and cross-frequency coupling are jointly reorganized at the brain-wide level remains unclear. Here, we developed a frequency-varying multilayer brain functional network (FMBFN) framework to analyze local field potential recordings from eight brain regions in male C57BL/6 mice. This framework integrates within- and cross-frequency coupling and extracts multi-scale network features to characterize brain network structure. Applying this approach in the chronic social defeat stress (CSDS) model, we found that CSDS was associated with frequency-specific hyperconnectivity and selective alterations in network integration during social interaction. Ketamine reversed social avoidance and induced the distinct reorganization of multilayer network topology, including region-specific nodal changes. Notably, the lateral habenula showed the response pattern opposite to that of the other recorded regions. As an exploratory cross-modal extension, we further examined gut microbial features and found that specific ketamine-associated microbial changes were linked to global network topology, suggesting candidate gut-brain association patterns. Together, these findings establish the FMBFN framework as a systems-level tool for characterizing brain-wide neural dynamics in psychiatric disorders and for linking network-level alterations to biological contexts.]
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20:11:07 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.202518224
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CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
We developed a human Bone‐on‐a‐Chip (BOAC) model that integrates autologous primary immune and bone cells on native human bone substrates within a xeno‐free, perfused environment. In contrast to existing models, which focus primarily on hematopoietic or stromal compartments, our system recapitulates key aspects of functional bone remodeling and enables the maintenance of mature immune cells (up to 42 days), with preserved functional responsiveness at defined time points during culture. Dynamic flow and sequential cell seeding facilitated osteoclast‐mediated resorption, osteoblast‐driven matrix formation, and the maintenance of donor‐specific immune profiles over extended culture periods. The balance between bone cell activity and immune cell persistence was further optimized by controlled temperature modulation. The BOAC model preserves key features of bone and bone marrow physiology, including extracellular matrix formation, soluble factor signaling, and cellular heterogeneity. The bone scaffold provides a physiologically relevant 3D architecture derived from decellularized human trabecular bone. Single‐nucleus RNA sequencing confirmed the presence of major donor‐specific immune and bone cell populations. This 3D human in vitro system provides a robust platform for translational research and personalized medicine.]
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20:11:07 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74822-2
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CO2 conversion
CO conversion
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Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [A likelihood-based method for identifying replay from spike sequences]
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20:11:07 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s42003-026-10585-2
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Coccolithophores produce 40–60% of marine calcium carbonate, largely through biomineralization of plates which encase cells in a ‘coccosphere’. Despite the importance of coccolithophore calcification in ocean biogeochemistry, its function remains unresolved. A hypothesis suggesting it acts as a physical deterrent has been investigated in grazers and viruses, but not in bacteria. Here we show bacterial pathogenicity in heavily-calcified
C. braarudii
treated with
Gephyrocapsa huxleyi
bacterial-pathogen,
Phaeobacter inhibens
, is only observed with decalcified algae, leading to algal-cell death within as little as 15 hours. Decalcified algal cell mortality is
P. inhibens
-specific and likely requires close proximity, since treatment with bacterial supernatant or growth-inhibiting concentrations of indole-3-acetic acid shows no detrimental effect. Additionally, scanning electron microscopy shows visible bacterial attachment only on decalcified
C. braarudii
. These findings provide the first experimental evidence that the coccosphere can act as a barrier against specific bacteria, highlighting its defensive role in coccolithophores.
]
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20:11:08 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76370
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Osteoarthritis (OA) is a prevalent age‐related disease associated with significant pain and disability. Although 5‐methylcytosine (m
5
C) modification is implicated in age‐related diseases, its role in OA remains unclear. Here, the regulatory effects and mechanisms of the m
5
C‐related proteins NSUN2 and ALYREF on chondrocyte senescence and inflammation during OA progression were investigated. NSUN2 expression and m
5
C modification were upregulated in articular chondrocytes from damaged cartilage of surgically induced OA and naturally aged mice, as well as in primary human chondrocyte aging models. NSUN2 was found to promote chondrocyte senescence and NLRP3 inflammasome activation. Messenger RNA (mRNA) m
5
C enrichment, RIP sequencing, and transcriptomic sequencing elucidated the mechanism by which NSUN2 regulates inflammation and aging. IP3R3 was identified as a target gene of NSUN2. Rescue experiments showed that NSUN2 induced Ca
2+
overload, which was mitigated by 2‐aminoethoxydiphenyl borate (2‐APB) or BAPTA/AM. NSUN2 knockdown or IP3R3 inhibition protected mouse articular cartilage from senescence and NLRP3 inflammasome activation, alleviating OA progression. Mechanistically, NSUN2 cooperated with the m
5
C reader ALYREF to stabilize and promote cytoplasmic export of IP3R3 mRNA, increasing IP3R3 expression. Thus, NSUN2 inhibition reduces chondrocyte senescence and cartilage damage via the IP3R3‐Ca
2+
axis, may represent a potential therapeutic target for further investigation.
]
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20:11:08 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74848-6
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CO conversion
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Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Electric field tunable coupling strength and quantum metric hot spots in a moiré flatband superconductor]
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20:11:09 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.202522510
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Nanoplastics (NPs) exposure can cause severe hepatic injuries. Gut microbiota is considered a contributing factor to multiple hepatic injuries. However, its role in NPs‐induced hepatic injuries remains unclear, and microbial intervention strategies are required. Our results reveal that oral exposure to polystyrene NPs reduces gut probiotic
Bifidobacterium pseudolongum
(
B.p
) and its metabolite inosine. Gut microbiota from NPs‐administered mice partially reproduces NPs‐related impairment of gut homeostasis and hepatic injury in recipient mice. Moreover,
B.p
colonization improves NPs‐induced gut homeostasis impairment and hepatic injury, and its protective effects are reproduced by supplementation with inosine. Mechanically,
B.p
colonization increases hepatic level of inosine and subsequently normalizes the expression of its target A2AR. Meanwhile, increased inosine inhibits the miR155/SOCS1/NF‐κB pathway and represses NPs‐induced M1 macrophage polarization. CGS21680, an agonist of A2AR, effectively represses lipopolysaccharide (LPS)‐induced M1 macrophage polarization and inhibits the miR155/SOCS1/NF‐κB pathway in vitro. Further, miR155 knockout inhibits NPs‐induced M1 macrophage polarization, but does not influence the suppression of NPs on A2AR. These findings suggest that
B.p
‐derived inosine can repress NPs‐induced M1 macrophages polarization by inhibiting the miR155/SOCS1/NF‐κB pathway via targeting A2AR. Altogether, this study further clarifies the role of gut microbiota in NPs‐induced hepatic injury and provides a potential microbial therapeutic strategy.
]
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20:11:09 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74889-x
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CO conversion
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
The primary treatment for non-metastatic colorectal cancer is surgical resection. Despite the use of neoadjuvant and/or adjuvant chemoradiation, up to 30% of patients undergoing surgery for colorectal cancer will develop a postoperative recurrence. Why patients develop postoperative tumors despite all known cancer being resected at the time of surgery is largely unknown, and novel biomarkers that can predict the development of recurrence are lacking. Here, we report a unique bacterial signature present in the gut during the perioperative period that is strongly associated with the development of postoperative tumors. By studying patients undergoing resection for colorectal cancer, we demonstrate that the gut microbiome on the day of surgery is enriched with collagenase-producing bacteria in patients who later develop a recurrence. This bacterial community demonstrated enhanced antimicrobial resistance, was not eradicated by the standardized perioperative bowel preparation, and could promote cancer cell migration and invasion. Our study establishes that microbiota may contribute to postoperative colorectal cancer recurrence and serve as a prognostic biomarker for postoperative oncologic outcomes.]
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20:11:09 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76334
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Factor‐dependent transcription activation is a key process of transcription regulation, involving complex interactions between multiple regulatory factors, RNA polymerase (RNAP), and promoter DNA, whose mechanism remains unclear. Here, we use single‐molecule magnetic trapping assays and fluorescence assays to characterize the kinetics of
Escherichia coli
(
E. coli
) RNAP transcription under the regulation of a pleiotropic AraC/XylS family factor, Rob, and elucidate their underlying mechanisms. We find that Rob prebinds RNAP holoenzyme to form a binary complex to facilitate promoter search. Upon promoter recognition, Rob enhances RNAP‐mediated promoter DNA unwinding to facilitate promoter escape and transition into transcription elongation. Rob activity is diversely regulated by small ligands, implying important roles of Rob C‐terminal domain (CTD) on its regulatory function. Our findings shed light on the mechanisms of Rob‐dependent transcription activation, which may provide insights into other transcription regulators in prokaryotes as well as eukaryotes.
]
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20:11:09 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75216-0
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Octahedral-motif-guided design of optoelectronic semiconductors via interpretable machine learning]
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20:11:10 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.13140/rg.2.2.32306.57280
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [INVESTIGATION OF THE EFFECT OF DIFFERENT IONIC LIQUIDS ON THE CAPACITIVE PERFORMANCE OF BIOMASS DERIVED ACTIVATED CARBON]
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20:11:10 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-74522-x
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
Amino acids are the building blocks of proteins and thus among the macronutrients to feed humankind. They have extensive industrial applications as animal feed and food additives like dietary supplements, and flavor enhancers and moreover as chemical precursors. We present the design of a synthetic enzyme cascade system for synthesizing a series of amino acids from methanol. This acts as a case study on how to contribute to the sustainable, renewable energy-based supply of food and feed. The modular nature of the cascade allows for plug-and-play module swapping and fine tuning of enzyme composition to customize the target compound. The one-pot enzymatic systems, capable of utilizing methanol, ammonia, and, partially, carbon dioxide, were employed to synthesize glycine, serine, L-aspartic acid, L-valine, L-glutamic acid, and L-proline. Considering the increasing availability of methanol produced from carbon dioxide through thermocatalytic and even electrocatalytic and photocatalytic processes, methanol represents a key intermediate in future CO
2
-based value chains. In this context, our study provides a pathway for amino acid synthesis and food and feed production based on methanol and CO
2
as carbon building blocks with reduced environmental impact.
]
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20:11:11 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.1002/advs.76302
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ABSTRACT
Palmitoylation has been implicated in learning and memory processes, yet its precise role and underlying mechanisms remain poorly understood. Here, we report a novel role of palmitoylation in regulating amygdalar synaptic plasticity and fear memory, involving the regulation of palmitate cycling on PSD‐95. Using a series of multi‐methodological experiments, we demonstrated that conditioned fear learning impairs amygdalar metaplasticity—an effect not observed in the hippocampus. Furthermore, PSD‐95 recruits LTP‐like mechanisms at lateral amygdala (LA) synapses, and its palmitoylation is critically involved in fear memory expression. Notably, PSD‐95 palmitoylation contributes to the occlusion of LA‐LTP following fear conditioning. Mechanistically, DHHC2 drives PSD‐95 palmitoylation and modulates LA synaptic plasticity following fear conditioning, whereas PICK1 facilitates the activity‐dependent trafficking of DHHC2 to PSD‐95 at synapses. Collectively, these findings highlight the PICK1‐DHHC2‐PSD‐95 pathway as a critical regulator of learning‐dependent metaplasticity in the LA, which occludes further HFS‐induced LTP while promoting fear memory expression.]
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20:11:11 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75060-2
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Metal–organic framework glass enables durable sodium-ion storage for hard carbon negative electrodes]
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20:11:11 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75057-x
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [ER sensing of lipid metabolism drives PRA family-dependent regulation of COPII vesicle transport]
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20:11:11 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-72148-7
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [PCSK5 promotes angiogenesis and cardiac repair after myocardial infarction]
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20:11:12 2002658 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75124-3
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Subcategories:
CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Quantum interference in a twisted high-Tc SQUID senses emergent interfacial order]
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20:11:12 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75143-0
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
The naked mole-rat
(Heterocephalus glaber)
is a long-lived mammal with resistance to cancer and hypoxia, suggesting the evolution of robust proteostasis networks. The ribosome, central for protein synthesis, is key to cellular stress responses and has an unusual feature: the 28S rRNA split; however, the details of its organization remain unknown. Here, we present high-resolution cryo-EM structures of the naked mole-rat 80S ribosome in four states of the elongation cycle. The structures reveal a conserved overall architecture and rRNA modification landscape compared to other mammals, and provide an atomic-level view of the distinct break in the 28S rRNA. This cleavage event, located in the D6 expansion segment, is structurally stabilized by a network of interactions with surrounding ribosomal proteins, maintaining the integrity of the large subunit. Our comparative analysis revealed that this compensatory network preserves a canonical architecture that is nearly indistinguishable from intact mouse and human ribosomes. These findings resolve the structural basis of this distinct cleavage, showing that it is a stable, integrated feature whose function is likely linked to more subtle regulatory mechanisms, rather than inducing major structural rearrangements.
]
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20:11:12 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.64628/aa.4rfyfqr3j
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [‘A giant blanket’: how better insulation lowers energy costs for you and the grid]
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20:11:13 2002814 CrossRefSearchJob - CrossRefSearchJob with doi 10.1038/s41467-026-75087-5
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [Abstract
In eukaryotes, meters of DNA are packaged into micrometer scale nuclei. Nucleosomes, as the major organizational unit, have been extensively studied in vitro, yet the elaborate 3D structure of chromatin inside cells and its distinct oligo-nucleosome arrangements remain poorly resolved. Here, we combine cryo-electron tomography with template matching, subtomogram averaging and molecular simulations to visualize nucleosomes and chromatin structure inside human cells. We confidently assign individual nucleosomes and report their in-situ structure at secondary structure resolution. By predicting the paths of linker DNA, we identify oligo-nucleosome arrangements and uncover higher-order chromatin structures in situ, including a 37-nm wide, elongated but non-fibrous arrangement. In situ structural biology thus reveals the molecular chromatin organization inside cells and sets the stage for 3D genomics.]
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CO2 conversion
CO conversion
Chemicals used as sacrificial electron donor
Host-Guest interactions in supramolecular chemistry
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Photocatalytic CO2 conversion
Electrochemical CO2 conversion
Homogeneous photocatalytic CO2 conversion
Heterogeneous photocatalytic CO2 conversion
Photocatalytic CO2 conversion to CO
Photocatalytic CO2 conversion to HCOOH
Photocatalytic CO2 conversion to CH4
Homogeneous electrochemical CO2 conversion
Heterogeneous electrochemical CO2 conversion' and documents [In sulfide-based all-solid-state battery (ASSB) composite cathodes, incomplete solid–solid contact and tortuous ionic/electronic transport pathways increase internal electrode resistance and complicate the interpretation of apparent impedance responses. Here, we present a distribution of relaxation times (DRT)-assisted phenomenological impedance approach for analyzing apparent impedance responses in terms of operational resistance components in composite cathodes based on LiNbO3-coated Ni-rich layered oxide cathode active materials. Electrochemical impedance spectroscopy was performed under controlled electrode loading, state of charge (SoC), and temperature conditions. Loading-dependent DRT analysis parameterized the apparent impedance response into five operational resistance components. The high-frequency components remained nearly unchanged or increased with increasing loading, whereas the mid- to low-frequency components generally decreased, suggesting opposite loading dependences between components tentatively associated with electrode-structural constraints and interface-related processes. SoC-dependent analysis compared relatively SoC-insensitive and SoC-sensitive operational components, while temperature-dependent analysis provided additional comparative constraints for their proposed operational interpretations by comparing their apparent activation energies. Based on these operational component correlations, a semi-empirical framework was developed to describe how the loading-dependent evolution of the DRT-deconvoluted components is reflected in the apparent impedance response. This framework helps reduce the risk of misinterpreting apparent impedance as a uniquely defined interfacial resistance and provides a practical basis for diagnosing structural limitations in high-loading ASSB composite cathodes.]
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