Property:Publisher
From ChemWiki
A
Royal Society of Chemistry (RSC) +
A Dinuclear Cobalt Cryptate as a Homogeneous Photocatalyst for Highly Selective and Efficient Visible-Light Driven CO2 Reduction to CO in CH3CN-H2O Solution +
Wiley +
An integrated Re(I) photocatalyst and sensitizer that activates the formation of formic acid from reduction of CO2 +
Royal Society of Chemistry (RSC) +
C
Royal Society of Chemistry (RSC) +
D
American Chemical Society (ACS) +
E
Exchange Coupling Determines Metal-Dependent Efficiency for Iron- and Cobalt-Catalyzed Photochemical CO2 Reduction +
American Chemical Society (ACS) +
Exploring the Full Potential of Photocatalytic Carbon Dioxide Reduction Using a Dinuclear Re2Cl2 Complex Assisted by Various Photosensitizers +
Wiley +
F
American Chemical Society (ACS) +
H
Highly Efficient and Robust Photocatalytic Systems for CO2 Reduction Consisting of a Cu(I) Photosensitizer and Mn(I) Catalysts +
American Chemical Society (ACS) +
Highly Efficient and Selective Photocatalytic CO2 Reduction by Iron and Cobalt Quaterpyridine Complexes +
American Chemical Society (ACS) +
Highly efficient and selective visible-light driven CO2-to-CO conversion by a Co-based cryptate in H2O-CH3CN solution +
Royal Society of Chemistry (RSC) +
I
L
Light-Driven Reduction of CO2 to CO in Water with a Cobalt Molecular Catalyst and an Organic Sensitizer +
American Chemical Society (ACS) +
M
Merging an organic TADF photosensitizer and a simple terpyridine–Fe(iii) complex for photocatalytic CO2 reduction +
Royal Society of Chemistry (RSC) +
Metal-free reduction of CO2 to formate using a photochemical organohydride-catalyst recycling strategy +
Springer Science and Business Media LLC +
Mn-carbonyl molecular catalysts containing a redox-active phenanthroline-5,6-dione for selective electro- and photoreduction of CO2 to CO or HCOOH +
Elsevier BV +
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 +
American Chemical Society (ACS) +
N
New Photosensitizers Based on Heteroleptic Cu(I) Complexes and CO2 Photocatalytic Reduction with (Ni(II)(cyclam))Cl2 +
Wiley +
Nickel(II) pincer complexes demonstrate that the remote substituent controls catalytic carbon dioxide reduction +
Royal Society of Chemistry (RSC) +
P