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Visible-Light-Responsive Photoanodes for Highly Active, Stable Water Oxidation

机译:可见光响应光电桥,用于高度活跃,稳定的水氧化

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Solar energy is a natural and effectively permanent resource and so the conversion of solar radiation into chemical or electrical energy is an attractive, although challenging, prospect. Photo-electrochemical (PEC) water splitting is a key aspect of producing hydrogen from solar power. However, practical water oxidation over photoanodes (in combination with water reduction at a photocathode) in PEC cells is currently difficult to achieve because of the large overpotentials in the reaction kinetics and the inefficient photoactivity of the semiconductors. The development of semiconductors that allow high solar-to-hydrogen conversion efficiencies and the utilization of these materials in photoanodes will be a necessary aspect of achieving efficient, stable water oxidation. This Review discusses advances in water oxidation activity over photoanodes of n-type visible-light-responsive (oxy)nitrides and oxides.
机译:太阳能是一种自然的有效的永久资源,因此太阳辐射转换为化学或电能是一种吸引力,虽然挑战,前景。 光电化学(PEC)水分裂是从太阳能产生氢的一个关键方面。 然而,由于在反应动力学中的大量过电位和半导体的低效拍摄,目前难以实现PECALODES上的实际水氧化(结合在光电阴极上的水还原)。 允许高氢转化效率的半导体的发展以及光处理中这些材料的利用将是实现有效,稳定的水氧化的必要方面。 该综述讨论了N型可见光响应(氧化氧化物)和氧化物的光桥上的水氧化活性的研究进展。

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