4.6 Article

Hydrogen Evolution with Minimal Parasitic Light Absorption by Dense Co-P Catalyst Films on Structured p-Si Photocathodes

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ACS ENERGY LETTERS
卷 3, 期 3, 页码 612-617

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AMER CHEMICAL SOC
DOI: 10.1021/acsenergylett.8b00034

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  1. Office of Science of the U.S. Department of Energy [DE-SC0004993]

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Planar and three-dimensionally structured p-Si devices, consisting of an electrodeposited Co-P catalyst on arrays of Si microwires or Si micropyramids, were used as photocathodes for solar-driven hydrogen evolution in 0.50 M H2SO4(aq) to assess the effects of electrode structuring on parasitic absorption by the catalyst. Without the use of an emitter layer, pSi/Co-P microwire arrays produced a photocurrent density of -10 mA cm(-2) at potentials that were 130 mV more positive than those of optimized planar pSi/Co-P devices. Champion p-Si/Co-P microwire array devices exhibited ideal regenerative cell solar-to-hydrogen efficiencies of >2.5% and were primarily limited by the photovoltage of the p-Si/Co-P junction. The vertical sidewalls of the Si microwire photoelectrodes thus minimized effects due to parasitic absorption at high loadings of catalyst for device structures with or without emitters.

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