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基于等离子体激元的异质结光催化剂降解废水中有机污染物的综述

A review on plasmonic-based heterojunction photocatalysts for degradation of organic pollutants in wastewater.

作者信息

Nazir Ahsan, Huo Pengwei, Wang Huijie, Weiqiang Zhou, Wan Yang

机构信息

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

School of Materials Science and Engineering, Jiangsu University, Zhenjiang, 212013 China.

出版信息

J Mater Sci. 2023;58(15):6474-6515. doi: 10.1007/s10853-023-08391-w. Epub 2023 Mar 25.

Abstract

UNLABELLED

Organic pollutants in wastewater are the biggest problem facing the world today due to population growth, rapid increase in industrialization, urbanization, and technological advancement. There have been numerous attempts to use conventional wastewater treatment techniques to address the issue of worldwide water contamination. However, conventional wastewater treatment has a number of shortcomings, including high operating costs, low efficiency, difficult preparation, fast recombination of charge carriers, generation of secondary waste, and limited light absorption. Therefore, plasmonic-based heterojunction photocatalysts have attracted much attention as a promising method to reduce organic pollutant problems in water due to their excellent efficiency, low operating cost, ease of fabrication, and environmental friendliness. In addition, plasmonic-based heterojunction photocatalysts contain a local surface plasmon resonance that enhances the performance of photocatalysts by improving light absorption and separation of photoexcited charge carriers. This review summarizes the major plasmonic effects in photocatalysts, including hot electron, local field effect, and photothermal effect, and explains the plasmonic-based heterojunction photocatalysts with five junction systems for the degradation of pollutants. Recent work on the development of plasmonic-based heterojunction photocatalysts for the degradation of various organic pollutants in wastewater is also discussed. Lastly, the conclusions and challenges are briefly described and the direction of future development of heterojunction photocatalysts with plasmonic materials is explored. This review could serve as a guide for the understanding, investigation, and construction of plasmonic-based heterojunction photocatalysts for various organic pollutants degradation.

GRAPHICAL ABSTRACT

Herein, the plasmonic effects in photocatalysts, such as hot electrons, local field effect, and photothermal effect, as well as the plasmonic-based heterojunction photocatalysts with five junction systems for the degradation of pollutants are explained. Recent work on plasmonic-based heterojunction photocatalysts for the degradation of various organic pollutants in wastewater such as dyes, pesticides, phenols, and antibiotics is discussed. Challenges and future developments are also described.

摘要

未标注

由于人口增长、工业化、城市化和技术进步的快速发展,废水中的有机污染物是当今世界面临的最大问题。人们已经多次尝试使用传统的废水处理技术来解决全球水污染问题。然而,传统的废水处理存在许多缺点,包括运营成本高、效率低、制备困难、电荷载流子快速复合、产生二次废物以及光吸收有限。因此,基于等离子体的异质结光催化剂因其优异的效率、低运营成本、易于制备和环境友好性,作为一种减少水中有机污染物问题的有前途的方法而备受关注。此外,基于等离子体的异质结光催化剂包含局部表面等离子体共振,通过改善光吸收和光激发电荷载流子的分离来提高光催化剂的性能。本综述总结了光催化剂中的主要等离子体效应,包括热电子、局部场效应和光热效应,并解释了具有五种结系统用于污染物降解的基于等离子体的异质结光催化剂。还讨论了用于降解废水中各种有机污染物的基于等离子体的异质结光催化剂的最新研究工作。最后,简要描述了结论和挑战,并探索了等离子体材料异质结光催化剂未来的发展方向。本综述可为理解、研究和构建用于各种有机污染物降解的基于等离子体的异质结光催化剂提供指导。

图形摘要

本文解释了光催化剂中的等离子体效应,如热电子、局部场效应和光热效应,以及具有五种结系统用于污染物降解的基于等离子体的异质结光催化剂。讨论了用于降解废水中各种有机污染物(如染料、农药、酚类和抗生素)的基于等离子体的异质结光催化剂的最新研究工作。还描述了挑战和未来发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e7a/10039801/f5e679d4f129/10853_2023_8391_Fig1_HTML.jpg

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