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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >A microstructured p-Si photocathode outcompetes Pt as a counter electrode to hematite in photoelectrochemical water splitting
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A microstructured p-Si photocathode outcompetes Pt as a counter electrode to hematite in photoelectrochemical water splitting

机译:以光电化学水分裂中的赤铁矿脱位的微结构化P-Si光电驱料脱位PT

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摘要

Herein, we communicate about an Earth-abundant semiconductor photocathode (p-Si/TiO2/NiOx) as an alternative for the rare and expensive Pt as a counter electrode for overall photoelectrochemical water splitting. The proposed photoelectrochemical (PEC) water-splitting device mimics the Z-scheme observed in natural photosynthesis by combining two photoelectrodes in a parallel-illumination mode. A nearly 60% increase in the photocurrent density (J(ph)) for pristine -Fe2O3 and a 77% increase in the applied bias photocurrent efficiency (ABPE) were achieved by replacing the conventionally used Pt cathode with an efficient, cost effective p-Si/TiO2/NiOx photocathode under parallel illumination. The resulting photocurrent density of 1.26 mA cm(-2) at 1.23V(RHE) represents a new record performance for hydrothermally grown pristine -Fe2O3 nanorod photoanodes in combination with a photocathode, which opens the prospect for further improvement by doping -Fe2O3 or by its decoration with co-catalysts. Electrochemical impedance spectroscopy measurements suggest that this significant performance increase is due to the enhancement of the space-charge field in -Fe2O3.
机译:在此,我们将关于地球 - 富有的半导体光电阴极(P-Si / TiO2 / NiOx)通信,作为用于整体光电化学水分子的对电极的稀有和昂贵的Pt的替代方案。所提出的光电化学(PEC)水分离装置通过在平行照明模式中组合两个光电极来模拟在天然光合作用中观察到的Z方案。通过用高效,成本有效的P-通过更换常规使用的Pt阴极,实现近60%的PhirTine -Fe2O3和施加的偏置光电流效率(ABPE)的77%增加的77%的增加。平行照明下的Si / TiO2 / NiOx光电阴极。得到1.23V(RHE)的所得光电流密度为1.26mA cm(-2)代表热量生长的原始-fe2O3纳米棒光池与光电阴极组合的新的记录性能,这使得通过掺杂-fe2O3或通过掺杂的前景进一步改善它用辅助催化剂的装饰。电化学阻抗光谱测量表明,这种显着的性能增加是由于-FE2O3中的空间电荷场的增强。

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