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内置电场促进废水中污染物的光催化降解

Built-In Electric Field Boost Photocatalytic Degradation of Pollutants in Wastewater.

作者信息

Yu Yang, Qiao Zhiyong, Ding Changming

机构信息

Jiangsu Province Engineering Research Center of Special Functional Textile Materials, Changzhou Vocational Institute of Textile and Garment, Changzhou, China.

School of Chemistry and Chemical Engineering, Jiangsu University, 212013, Zhenjiang, China.

出版信息

Chem Rec. 2024 Oct;24(10):e202400106. doi: 10.1002/tcr.202400106. Epub 2024 Sep 25.

Abstract

The photocatalysis technique shows significant potential for wastewater degradation; however, the rapid recombination of photogenerated holes and electrons severely limits its photocatalytic efficiency. This situation necessitates the development of effective strategies to tackle these challenges. One well-documented approach is built-in electric field engineering in heterojunctions or composites, which has been shown to enhance electron transfer and thereby reduce the recombination of electrons and holes. This strategy has proven highly effective in significantly improving photocatalytic activity for the degradation of pollutants in wastewater. In this context, we summarize recent advancements in built-in electric field engineering in photocatalysts, highlighting the fundamentals and modifications of this approach, as well as its positive impact on photocatalytic performance in the degradation of wastewater pollutants.

摘要

光催化技术在废水降解方面显示出巨大潜力;然而,光生空穴和电子的快速复合严重限制了其光催化效率。这种情况需要开发有效的策略来应对这些挑战。一种有充分文献记载的方法是在异质结或复合材料中进行内建电场工程,已证明这种方法可增强电子转移,从而减少电子与空穴的复合。该策略已被证明在显著提高光催化活性以降解废水中的污染物方面非常有效。在此背景下,我们总结了光催化剂内建电场工程的最新进展,重点介绍了该方法的基本原理和改进,以及它对废水污染物降解中光催化性能的积极影响。

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