Microstructured photoelectrode morphologies can advantageously facilitate integration of optically absorbing electrocatalysts with semiconducting light absorbers, to maintain low overpotentials for fuel production without producing a substantial loss in photocurrent density. We report herein the use of arrays of antireflective, high-aspect-ratio Si microcones (μ-cones), coupled with light-blocking Pt and Co–P catalysts, as photocathodes for H_2 evolution. Thick (∼16 nm) layers of Pt or Co–P deposited onto Si μ-cone arrays yielded absolute light-limited photocurrent densities of ∼32 mA cm^(−2), representing a reduction in light-limited photocurrent density of 6% relative to bare Si μ-cone-array photocathodes, while maintaining high fill fact...
The development of low cost, scalable, renewable energy technologies is one of today's most pressing...
The electrocatalytic performance for hydrogen evolution has been evaluated for radial-junction n<sup...
We demonstrate the first example of silicon nanowire array photocathodes coupled with hollow spheres...
The photocathodic H_2-evolution performance of Ni–Mo-coated radial n+p junction Si microwire (Si MW)...
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 electrocatalytic performance for hydrogen evolution has been evaluated for radial-junction n^+p-...
The electrocatalytic performance for hydrogen evolution has been evaluated for radial-junction n^+p-...
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...
Arrays of B-doped p-Si microwires, diffusion-doped with P to form a radial n+ emitter and subsequent...
Arrays of B-doped p-Si microwires, diffusion-doped with P to form a radial n+ emitter and subsequent...
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,...
bS Supporting Information ABSTRACT: Arrays of B-doped p-Si microwires, diffusion-doped with P to for...
The development of low cost, scalable, renewable energy technologies is one of today's most pressing...
The electrocatalytic performance for hydrogen evolution has been evaluated for radial-junction n<sup...
We demonstrate the first example of silicon nanowire array photocathodes coupled with hollow spheres...
The photocathodic H_2-evolution performance of Ni–Mo-coated radial n+p junction Si microwire (Si MW)...
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 electrocatalytic performance for hydrogen evolution has been evaluated for radial-junction n^+p-...
The electrocatalytic performance for hydrogen evolution has been evaluated for radial-junction n^+p-...
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...
Arrays of B-doped p-Si microwires, diffusion-doped with P to form a radial n+ emitter and subsequent...
Arrays of B-doped p-Si microwires, diffusion-doped with P to form a radial n+ emitter and subsequent...
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,...
bS Supporting Information ABSTRACT: Arrays of B-doped p-Si microwires, diffusion-doped with P to for...
The development of low cost, scalable, renewable energy technologies is one of today's most pressing...
The electrocatalytic performance for hydrogen evolution has been evaluated for radial-junction n<sup...
We demonstrate the first example of silicon nanowire array photocathodes coupled with hollow spheres...