Charles E Creissen
Affiliations: | Collège de France, Paris, Île-de-France, France |
Area:
Electrocatalysis, CO2 reduction, Solar FuelsGoogle:
"Charles Creissen"Mean distance: (not calculated yet)
Parents
Sign in to add mentorErwin Reisner | grad student | Cambridge | |
Marc Fontecave | post-doc | College de France |
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Publications
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Creissen CE, Rivera de la Cruz JG, Karapinar D, et al. (2022) Molecular Inhibition for Selective CO2 Conversion. Angewandte Chemie (International Ed. in English) |
Creissen CE, Fontecave M. (2022) Keeping sight of copper in single-atom catalysts for electrochemical carbon dioxide reduction. Nature Communications. 13: 2280 |
Creissen CE, Warnan J, Antón-García D, et al. (2019) Inverse Opal CuCrO Photocathodes for H Production Using Organic Dyes and a Molecular Ni Catalyst. Acs Catalysis. 9: 9530-9538 |
Aitchison CM, Andrei V, Antón-García D, et al. (2019) Synthetic approaches to artificial photosynthesis: general discussion. Faraday Discussions |
Abe R, Aitchison CM, Andrei V, et al. (2019) Demonstrator devices for artificial photosynthesis: general discussion. Faraday Discussions |
Kuehnel MF, Creissen CE, Sahm CD, et al. (2019) ZnSe Nanorods as Visible-Light Absorbers for Photocatalytic and Photoelectrochemical H Evolution in Water. Angewandte Chemie (International Ed. in English). 58: 5059-5063 |
Lu H, Andrei V, Jenkinson KJ, et al. (2018) Single-Source Bismuth (Transition Metal) Polyoxovanadate Precursors for the Scalable Synthesis of Doped BiVO Photoanodes. Advanced Materials (Deerfield Beach, Fla.). e1804033 |
Creissen CE, Warnan J, Reisner E. (2018) Solar H generation in water with a CuCrO photocathode modified with an organic dye and molecular Ni catalyst. Chemical Science. 9: 1439-1447 |
Gross MA, Creissen CE, Orchard KL, et al. (2016) Photoelectrochemical hydrogen production in water using a layer-by-layer assembly of a Ru dye and Ni catalyst on NiO. Chemical Science. 7: 5537-5546 |