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Recent progress in oxynitride photocatalysts for visible-light-driven water splitting

机译:用于可见光分解水的氧氮化物光催化剂的最新进展

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摘要

Photocatalytic water splitting into hydrogen and oxygen is a method to directly convert light energy into storable chemical energy, and has received considerable attention for use in large-scale solar energy utilization. Particulate semiconductors are generally used as photocatalysts, and semiconductor properties such as bandgap, band positions, and photocarrier mobility can heavily impact photocatalytic performance. The design of active photocatalysts has been performed with the consideration of such semiconductor properties. Photocatalysts have a catalytic aspect in addition to a semiconductor one. The ability to control surface redox reactions in order to efficiently produce targeted reactants is also important for photocatalysts. Over the past few decades, various photocatalysts for water splitting have been developed, and a recent main concern has been the development of visible-light sensitive photocatalysts for water splitting. This review introduces the study of water-splitting photocatalysts, with a focus on recent progress in visible-light induced overall water splitting on oxynitride photocatalysts. Various strategies for designing efficient photocatalysts for water splitting are also discussed herein.
机译:将光催化水分解为氢和氧的方法是将光能直接转换为可存储的化学能的方法,并且在大规模太阳能利用中受到了广泛的关注。微粒半导体通常用作光催化剂,并且半导体性能(例如带隙,能带位置和光载流子迁移率)会严重影响光催化性能。活性光催化剂的设计已经考虑了这种半导体性能而进行。除了半导体以外,光催化剂还具有催化方面。控制表面氧化还原反应以有效产生目标反应物的能力对于光催化剂也很重要。在过去的几十年中,已经开发了用于水分解的各种光催化剂,并且最近主要关注的是用于水分解的可见光敏感性光催化剂的开发。这篇综述介绍了水分解光催化剂的研究,重点是可见光诱导的氧氮化物光催化剂上总水分解的最新进展。本文还讨论了设计用于水分解的有效光催化剂的各种策略。

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