A solar-driven photoelectrochemical cell provides a promising approach to enable the large-scale conversion and storage of solar energy, but requires the use of Earth-abundant materials. Earth-abundant catalysts for the hydrogen evolution reaction, for example nickel–molybdenum (Ni–Mo), are generally opaque and require high mass loading to obtain high catalytic activity, which in turn leads to parasitic light absorption for the underlying photoabsorber (for example silicon), thus limiting production of hydrogen. Here, we show the fabrication of a highly efficient photocathode by spatially and functionally decoupling light absorption and catalytic activity. Varying the fraction of catalyst coverage over the microwires, and the pitch between ...
Planar and three-dimensionally structured p-Si devices, consisting of an electrodeposited Co–P catal...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
An n+p-Si microwire array coupled with a two-layer catalyst film consisting of Ni–Mo nanopowder and ...
The photocathodic H_2-evolution performance of Ni–Mo-coated radial n+p junction Si microwire (Si MW)...
The photocathodic H_2-evolution performance of Ni–Mo-coated radial n+p junction Si microwire (Si MW)...
Most photoanodes commonly applied in solar fuel research (e.g., of Fe2O3, BiVO4, TiO2, or WO3) are o...
Designs for solar fuels devices frequently employ electrocatalysts integrated directly on the light-...
Most photoanodes commonly applied in solar fuel research (e.g., of Fe<sub>2</sub>O<sub>3</sub>, BiVO...
Planar and three-dimensionally structured p-Si devices, consisting of an electrodeposited Co–P catal...
The dark electrocatalytic and light photocathodic hydrogen evolution properties of Ni, Ni–Mo alloys,...
Highly structured silicon microwire (Si MW) arrays have been synthesized and characterized as absorb...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
Planar and three-dimensionally structured p-Si devices, consisting of an electrodeposited Co–P catal...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
Planar and three-dimensionally structured p-Si devices, consisting of an electrodeposited Co–P catal...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
An n+p-Si microwire array coupled with a two-layer catalyst film consisting of Ni–Mo nanopowder and ...
The photocathodic H_2-evolution performance of Ni–Mo-coated radial n+p junction Si microwire (Si MW)...
The photocathodic H_2-evolution performance of Ni–Mo-coated radial n+p junction Si microwire (Si MW)...
Most photoanodes commonly applied in solar fuel research (e.g., of Fe2O3, BiVO4, TiO2, or WO3) are o...
Designs for solar fuels devices frequently employ electrocatalysts integrated directly on the light-...
Most photoanodes commonly applied in solar fuel research (e.g., of Fe<sub>2</sub>O<sub>3</sub>, BiVO...
Planar and three-dimensionally structured p-Si devices, consisting of an electrodeposited Co–P catal...
The dark electrocatalytic and light photocathodic hydrogen evolution properties of Ni, Ni–Mo alloys,...
Highly structured silicon microwire (Si MW) arrays have been synthesized and characterized as absorb...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
Planar and three-dimensionally structured p-Si devices, consisting of an electrodeposited Co–P catal...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
Planar and three-dimensionally structured p-Si devices, consisting of an electrodeposited Co–P catal...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...