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极化在光催化中的作用。

The Role of Polarization in Photocatalysis.

作者信息

Chen Fang, Huang Hongwei, Guo Lin, Zhang Yihe, Ma Tianyi

机构信息

Beijing Key Laboratory of Materials Utilization of Nonmetallic Minerals and Solid Wastes, School of Materials Science and Technology, China University of Geosciences, Beijing, 100083, China.

School of Chemistry, Beijing Advanced Innovation Center for Biomedical Engineering, Beihang University, Beijing, 100191, China.

出版信息

Angew Chem Int Ed Engl. 2019 Jul 22;58(30):10061-10073. doi: 10.1002/anie.201901361. Epub 2019 Apr 30.

Abstract

Semiconductor photocatalysis as a desirable technology shows great potential in environmental remediation and renewable energy generation, but its efficiency is severely restricted by the rapid recombination of charge carriers in the bulk phase and on the surface of photocatalysts. Polarization has emerged as one of the most effective strategies for addressing the above-mentioned issues, thus effectively promoting photocatalysis. This review summarizes the recent advances on improvements of photocatalytic activity by polarization-promoted bulk and surface charge separation. Highlighted is the recent progress in charge separation advanced by different types of polarization, such as macroscopic polarization, piezoelectric polarization, ferroelectric polarization, and surface polarization, and the related mechanisms. Finally, the strategies and challenges for polarization enhancement to further enhance charge separation and photocatalysis are discussed.

摘要

半导体光催化作为一种理想的技术,在环境修复和可再生能源生产方面显示出巨大潜力,但其效率受到光催化剂体相和表面电荷载流子快速复合的严重限制。极化已成为解决上述问题最有效的策略之一,从而有效地促进了光催化。本文综述了通过极化促进体相和表面电荷分离来提高光催化活性的最新进展。重点介绍了不同类型极化(如宏观极化、压电极化、铁电极化和表面极化)促进电荷分离的最新进展及其相关机制。最后,讨论了进一步增强电荷分离和光催化的极化增强策略和挑战。

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