The combination of enzymes with semiconductors enables the photoelectrochemical characterization of electron-transfer processes at highly active and well-defined catalytic sites on a light-harvesting electrode surface. Herein, we report the integration of a hydrogenase on a TiO2-coated p-Si photocathode for the photo-reduction of protons to H2. The immobilized hydrogenase exhibits activity on Si attributable to a bifunctional TiO2 layer, which protects the Si electrode from oxidation and acts as a biocompatible support layer for the productive adsorption of the enzyme. The p-Si|TiO2|hydrogenase photocathode displays visible-light driven production of H2 at an energy-storing, positive electrochemical potential and an essentially quantitative...
Semiconductor-based photocathodes with high light-absorption capability are of interest in the produ...
International audienceClean energy vectors are needed towards a fossil fuel-free society, diminishin...
Solar fuels such as H2 generated from sunlight and seawater using earth-abundant materials are expec...
The combination of enzymes with semiconductors enables the photoelectrochemical characterization of ...
International audienceThe combination of enzymes with semiconductors enables the photoelectrochemica...
The integration of enzymes with semiconductors enables the photoelectrochemical characterization of ...
International audienceHydrogenases (H2ases) are benchmark electrocatalysts in H2 production, both in...
Hydrogenases (H2 ases) are benchmark electrocatalysts for H2 production, both in biology and (photo)...
The development of photoelectrodes capable of light-driven hydrogen evolution from water is an impor...
Hydrogen production through direct sunlight-driven water splitting in photo-electrochemical cells (P...
Metalloenzymes featuring earth-abundant metal-based cores exhibit rates for catalytic processes such...
A Cu2O-ZnO-hydrogenase photocathode possessed enzyme/semiconductor junction has been constructed by ...
International audienceIn natural photosynthesis, light is used for the production of chemical energy...
AbstractHydrogenase from Thiocapsa roseopersicina adsorbed on TiO2 particles, using electrons photog...
Semiconductor-based photocathodes with high light-absorption capability are of interest in the produ...
International audienceClean energy vectors are needed towards a fossil fuel-free society, diminishin...
Solar fuels such as H2 generated from sunlight and seawater using earth-abundant materials are expec...
The combination of enzymes with semiconductors enables the photoelectrochemical characterization of ...
International audienceThe combination of enzymes with semiconductors enables the photoelectrochemica...
The integration of enzymes with semiconductors enables the photoelectrochemical characterization of ...
International audienceHydrogenases (H2ases) are benchmark electrocatalysts in H2 production, both in...
Hydrogenases (H2 ases) are benchmark electrocatalysts for H2 production, both in biology and (photo)...
The development of photoelectrodes capable of light-driven hydrogen evolution from water is an impor...
Hydrogen production through direct sunlight-driven water splitting in photo-electrochemical cells (P...
Metalloenzymes featuring earth-abundant metal-based cores exhibit rates for catalytic processes such...
A Cu2O-ZnO-hydrogenase photocathode possessed enzyme/semiconductor junction has been constructed by ...
International audienceIn natural photosynthesis, light is used for the production of chemical energy...
AbstractHydrogenase from Thiocapsa roseopersicina adsorbed on TiO2 particles, using electrons photog...
Semiconductor-based photocathodes with high light-absorption capability are of interest in the produ...
International audienceClean energy vectors are needed towards a fossil fuel-free society, diminishin...
Solar fuels such as H2 generated from sunlight and seawater using earth-abundant materials are expec...