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用于光电化学水分解的 WO 单颗粒层电极的晶面工程

Facet Engineering on WO Mono-Particle-Layer Electrode for Photoelectrochemical Water Splitting.

作者信息

Lin Wenrui, Zhang Boyang, Liu Kaiwei, Zhang Jifang, Wang Jiaming, Ma Guijun

机构信息

School of Physical Science and Technology, ShanghaiTech University, Shanghai, 201210, P. R. China.

University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.

出版信息

Chemistry. 2022 Sep 12;28(51):e202201169. doi: 10.1002/chem.202201169. Epub 2022 Jul 21.

Abstract

Photoelectrochemical (PEC) performance of WO photoanodes for water splitting is heavily influenced by the orientation of crystal facets. In this work, mono-particle-layer electrodes, assembled by particulate WO square plates with highly uniform alignment along the (002) facet, improved PEC water oxidation kinetics and stability. Photo-deposition of Au along the cracks formed on the surface of the plates, which are the edges of {110} facets, was found to further enhance electron collection efficiency. Combination of these two strategies allowed the facet-engineered WO electrode to produce significantly higher efficiencies in charge separation and transfer than the electrode prepared without facet orientation. This work has provided a facile route for fabricating a structurally designed WO photoelectrode, which is also applicable to other regularly shaped semiconductor photocatalysts with anisotropic charge migration.

摘要

用于水分解的WO光阳极的光电化学(PEC)性能受到晶体面取向的严重影响。在这项工作中,由沿(002)面高度均匀排列的颗粒状WO方形板组装而成的单颗粒层电极,改善了PEC水氧化动力学和稳定性。沿着在板表面形成的裂纹(即{110}面的边缘)光沉积Au,被发现可进一步提高电子收集效率。这两种策略的结合使经过面工程设计的WO电极在电荷分离和转移方面产生的效率明显高于未进行面取向制备的电极。这项工作为制造结构设计的WO光电极提供了一条简便途径,该途径也适用于其他具有各向异性电荷迁移的规则形状半导体光催化剂。

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