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光电催化中基于金属氧化物的光电极:进展与挑战

Metal Oxide Based Photoelectrodes in Photoelectrocatalysis: Advances and Challenges.

作者信息

Wu Heng, Zhang Ding, Lei Bing-Xin, Liu Zhao-Qing

机构信息

School of Chemistry and Chemical Engineering, Key Laboratory of Electrochemical Energy Storage and Energy Conversion of Hainan Province, Key Laboratory of Electrochemical Energy Storage and Light Energy Conversion Materials of Haikou City, Hainan Normal University, Haikou, 571158, P. R. China.

School of Materials and Environment, Guangxi Minzu University, Nanning, 530006, P. R. China.

出版信息

Chempluschem. 2022 May;87(5):e202200097. doi: 10.1002/cplu.202200097.

Abstract

Metal oxide materials show promise for application in photoelectrocatalytic conversion due to their inherent advantages involving positive reactive surface, improved light absorption capability, efficient charge separation yield, and fast charge transport channels. The unique electrical and optical properties of metal oxide based photoelectrodes have a great effect on their performance in solar cells, photoelectrocatalysis, and photocatalysis. It has been reported that the presence of defects on grain boundaries, oxygen vacancy, doping strategy, and heterojunction play a vital role in both the efficiency and durability of their photoelectric application. However, the intrinsic mechanisms at the atomic level remained unclear, which require more in-depth understanding in terms of theoretical analysis. In this Review, we emphatically introduce the recent advances and current challenges of metal oxide-based photoelectrodes for photoelectrocatalytic application, beneath the structure-activity relationship of metal oxide catalysts. Then, we give a summary of the state-of-the-art research in the preparation and application for the metal oxide based composite materials. Finally, we discuss key aspects, which should be addressed for design and construction.

摘要

金属氧化物材料因其具有正性反应表面、增强的光吸收能力、高效的电荷分离产率和快速的电荷传输通道等固有优势,在光电催化转化中显示出应用前景。基于金属氧化物的光电极独特的电学和光学性质对其在太阳能电池、光电催化和光催化中的性能有很大影响。据报道,晶界缺陷、氧空位、掺杂策略和异质结的存在对其光电应用的效率和耐久性都起着至关重要的作用。然而,原子水平上的内在机制仍不清楚,这需要从理论分析方面进行更深入的理解。在这篇综述中,我们着重介绍了基于金属氧化物的光电极在光电催化应用方面的最新进展和当前挑战,以及金属氧化物催化剂的结构-活性关系。然后,我们总结了基于金属氧化物的复合材料在制备和应用方面的最新研究。最后,我们讨论了设计和构建中应解决的关键问题。

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