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List of results
- Molecular Catalysis of the Electrochemical and Photochemical Reduction of CO2 with Earth-Abundant Metal Complexes. Selective Production of CO vs HCOOH by Switching of the Metal Center + (Lingjing Chen)
- Visible-Light-Driven Conversion of CO2 to CH4 with an Organic Sensitizer and an Iron Porphyrin Catalyst + (Heng Rao)
- A Cu(I) Co(II) cryptate for the visible light-driven reduction of CO2 + (Julia Jökel)
- Toward Visible-Light Photochemical CO2‑to-CH4 Conversion in Aqueous Solutions Using Sensitized Molecular Catalysis + (Heng Rao)
- Phenoxazine-Sensitized CO2-to-CO Reduction with an Iron Porphyrin Catalyst: A Redox Properties-Catalytic Performance Study + (Martin Kientz)
- Light-Driven Reduction of CO2 to CO in Water with a Cobalt Molecular Catalyst and an Organic Sensitizer + (Pui-Yu Ho)
- Visible-light-driven methane formation from CO2 with a molecular iron catalyst + (Heng Rao)
- Selective and Efficient Photocatalytic CO2 Reduction to CO Using Visible Light and an Iron-Based Homogeneous Catalyst + (Julien Bonin)
- Visible-light-driven methane formation from CO2 with a molecular iron catalyst + (Marc Robert)
- A Cu(I) Co(II) cryptate for the visible light-driven reduction of CO2 + (Marc Robert)
- Toward Visible-Light Photochemical CO2‑to-CH4 Conversion in Aqueous Solutions Using Sensitized Molecular Catalysis + (Marc Robert)
- Phenoxazine-Sensitized CO2-to-CO Reduction with an Iron Porphyrin Catalyst: A Redox Properties-Catalytic Performance Study + (Marc Robert)
- Highly Efficient and Selective Photocatalytic CO2 Reduction by Iron and Cobalt Quaterpyridine Complexes + (Marc Robert)
- Selective and Efficient Photocatalytic CO2 Reduction to CO Using Visible Light and an Iron-Based Homogeneous Catalyst + (Marc Robert)
- Molecular Catalysis of the Electrochemical and Photochemical Reduction of CO2 with Earth-Abundant Metal Complexes. Selective Production of CO vs HCOOH by Switching of the Metal Center + (Marc Robert)
- Light-Driven Reduction of CO2 to CO in Water with a Cobalt Molecular Catalyst and an Organic Sensitizer + (Marc Robert)
- Visible-Light-Driven Conversion of CO2 to CH4 with an Organic Sensitizer and an Iron Porphyrin Catalyst + (Marc Robert)
- Efficient Visible-Light-Driven Carbon Dioxide Reduction using a Bioinspired Nickel Molecular Catalyst + (Jing Zhang)
- Efficient Visible-Light-Driven Carbon Dioxide Reduction using a Bioinspired Nickel Molecular Catalyst + (Marc Robert)
- A molecular noble metal-free system for efficient visible light-driven reduction of CO2 to CO + (Lingjing Chen)
- A molecular noble metal-free system for efficient visible light-driven reduction of CO2 to CO + (Marc Robert)
- Chirdon-et-al-2016-tuning-iridium-photocatalysts-and-light-irradiation-for-enhanced-co2-reduction.pdf + (Andrea Genoni)
- Chirdon-et-al-2016-tuning-iridium-photocatalysts-and-light-irradiation-for-enhanced-co2-reduction.pdf + (Marcella Bonchio)
- Exchange Coupling Determines Metal-Dependent Efficiency for Iron- and Cobalt-Catalyzed Photochemical CO2 Reduction + (Martin Head-Gordon)
- Exchange Coupling Determines Metal-Dependent Efficiency for Iron- and Cobalt-Catalyzed Photochemical CO2 Reduction + (Martin Head-Gordon)
- Phenoxazine-Sensitized CO2-to-CO Reduction with an Iron Porphyrin Catalyst: A Redox Properties-Catalytic Performance Study + (Martin Kientz)
- Phenoxazine-Sensitized CO2-to-CO Reduction with an Iron Porphyrin Catalyst: A Redox Properties-Catalytic Performance Study + (Martin Kientz)
- Exploring the Full Potential of Photocatalytic Carbon Dioxide Reduction Using a Dinuclear Re2Cl2 Complex Assisted by Various Photosensitizers + (Robin Giereth)
- Exploring the Full Potential of Photocatalytic Carbon Dioxide Reduction Using a Dinuclear Re2Cl2 Complex Assisted by Various Photosensitizers + (Martin Obermeier)
- Metal-free reduction of CO2 to formate using a photochemical organohydride-catalyst recycling strategy + (Weibin Xie)
- Metal-free reduction of CO2 to formate using a photochemical organohydride-catalyst recycling strategy + (Masaaki Fuki)
- Metal-free reduction of CO2 to formate using a photochemical organohydride-catalyst recycling strategy + (Masahiko Hayashi)
- Metal-free reduction of CO2 to formate using a photochemical organohydride-catalyst recycling strategy + (Masahiro Yamanaka)
- Function-Integrated Ru Catalyst for Photochemical CO2 Reduction + (Sze Koon Lee)
- Function-Integrated Ru Catalyst for Photochemical CO2 Reduction + (Masaya Okamura)
- Selective and Efficient Photocatalytic CO2 Reduction to CO Using Visible Light and an Iron-Based Homogeneous Catalyst + (Julien Bonin)
- Selective and Efficient Photocatalytic CO2 Reduction to CO Using Visible Light and an Iron-Based Homogeneous Catalyst + (Mathilde Routier)
- Mn-carbonyl molecular catalysts containing a redox-active phenanthroline-5,6-dione for selective electro- and photoreduction of CO2 to CO or HCOOH + (Matthew Stanbury)
- Mn-carbonyl molecular catalysts containing a redox-active phenanthroline-5,6-dione for selective electro- and photoreduction of CO2 to CO or HCOOH + (Matthew Stanbury)
- Photochemical Reduction of Carbon Dioxide to Formic Acid using Ruthenium(II)-Based Catalysts and Visible Light + (Alonso Rosas-Hernández)
- Photochemical Reduction of Carbon Dioxide to Formic Acid using Ruthenium(II)-Based Catalysts and Visible Light + (Matthias Beller)
- Exchange Coupling Determines Metal-Dependent Efficiency for Iron- and Cobalt-Catalyzed Photochemical CO2 Reduction + (Patricia De La Torre)
- Exchange Coupling Determines Metal-Dependent Efficiency for Iron- and Cobalt-Catalyzed Photochemical CO2 Reduction + (Matthias Loipersberger)
- Exploring the Full Potential of Photocatalytic Carbon Dioxide Reduction Using a Dinuclear Re2Cl2 Complex Assisted by Various Photosensitizers + (Matthias Schwalbe)
- Photocatalytic CO2 reduction with aminoanthraquinone organic dyes + (Qinqin Lei)
- Photocatalytic CO2 reduction with aminoanthraquinone organic dyes + (Mei Ming)
- Exploring the Full Potential of Photocatalytic Carbon Dioxide Reduction Using a Dinuclear Re2Cl2 Complex Assisted by Various Photosensitizers + (Michael Karnahl)
- A Cu(I) Co(II) cryptate for the visible light-driven reduction of CO2 + (Julia Jökel)
- A Cu(I) Co(II) cryptate for the visible light-driven reduction of CO2 + (Michael Römelt)

