An n+p-Si microwire array coupled with a two-layer catalyst film consisting of Ni–Mo nanopowder and TiO_2 light-scattering nanoparticles has been used to simultaneously achieve high fill factors and light-limited photocurrent densities from photocathodes that produce H_2(g) directly from sunlight and water. The TiO_2 layer scattered light back into the Si microwire array, while optically obscuring the underlying Ni–Mo catalyst film. In turn, the Ni–Mo film had a mass loading sufficient to produce high catalytic activity, on a geometric area basis, for the hydrogen-evolution reaction. The best-performing microwire array devices prepared in this work exhibited short-circuit photocurrent densities of −14.3 mA cm^(−2), photovoltages of 420 mV, ...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...
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)...
The dark electrocatalytic and light photocathodic hydrogen evolution properties of Ni, Ni–Mo alloys,...
A solar-driven photoelectrochemical cell provides a promising approach to enable the large-scale con...
Microstructured photoelectrode morphologies can advantageously facilitate integration of optically a...
Planar and three-dimensionally structured p-Si devices, consisting of an electrodeposited Co–P catal...
Planar and three-dimensionally structured p-Si devices, consisting of an electrodeposited Co–P catal...
Modification of p-type Si surface by active and stable earth-abundant electrocatalysts is an effecti...
We demonstrate the first example of silicon nanowire array photocathodes coupled with hollow spheres...
Planar and three-dimensionally structured p-Si devices, consisting of an electrodeposited Co–P catal...
The development of low cost, scalable, renewable energy technologies is one of today's most pressing...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...
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)...
The dark electrocatalytic and light photocathodic hydrogen evolution properties of Ni, Ni–Mo alloys,...
A solar-driven photoelectrochemical cell provides a promising approach to enable the large-scale con...
Microstructured photoelectrode morphologies can advantageously facilitate integration of optically a...
Planar and three-dimensionally structured p-Si devices, consisting of an electrodeposited Co–P catal...
Planar and three-dimensionally structured p-Si devices, consisting of an electrodeposited Co–P catal...
Modification of p-type Si surface by active and stable earth-abundant electrocatalysts is an effecti...
We demonstrate the first example of silicon nanowire array photocathodes coupled with hollow spheres...
Planar and three-dimensionally structured p-Si devices, consisting of an electrodeposited Co–P catal...
The development of low cost, scalable, renewable energy technologies is one of today's most pressing...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...