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用于降解有机污染物的基于石墨相氮化碳的光酶催化剂的最新进展。

Recent advances in g-CN-based photo-enzyme catalysts for degrading organic pollutants.

作者信息

Gu Yaohua, Li Siao, Li Mingming, Wang Xinyu, Liu Ying, Shi Keren, Bai Xiaoyan, Yao Qing, Wu Zhiqiang, Yao Huiqin

机构信息

Key Laboratory of Environmental Factors and Chronic Disease Control, College of Public Health and Management, School of Basic Medicine, Ningxia Medical University Yinchuan 750004 P. R. China

Urology Surgery, General Hospital of Ningxia Medical University Yinchuan 750004 P. R. China.

出版信息

RSC Adv. 2023 Jan 4;13(2):937-947. doi: 10.1039/d2ra06994f. eCollection 2023 Jan 3.

Abstract

In recent years, photocatalytic reactions have shown great potential in degrading organic pollutants because of their simple operation and no secondary pollution. Graphitic carbon nitride (g-CN) is one of the most frequently used photocatalyst materials in the field of photocatalysis because it is a form of photocatalytic material with facile synthesis, no metal, visible light response, and strong stability. Enzyme-catalyzed degradation has received extensive attention due to its broad selectivity, high efficiency, and environmental friendliness. Horseradish peroxidase (HRP), one of several oxidoreductases utilized for pollutant degradation, has a wide range of applications due to its mild reaction conditions and high stability. Exploring efficient platforms for immobilizing g-CN and HRP to develop photo-enzyme-coupled catalysis is an attractive practical topic. The coupling effect of g-CN and HRP improves the carrier separation efficiency and generates more active species, which finally realize the solar-driven non-selective destruction of organic pollutants. We describe the alteration of g-CN and the immobilization of HRP in detail in this study, and we outline recent developments in the photo-enzyme coupling of g-CN and HRP.

摘要

近年来,光催化反应因其操作简单且无二次污染,在降解有机污染物方面展现出巨大潜力。石墨相氮化碳(g-CN)是光催化领域最常用的光催化剂材料之一,因为它是一种合成简便、无金属、具有可见光响应且稳定性强的光催化材料形式。酶催化降解因其广泛的选择性、高效性和环境友好性而受到广泛关注。辣根过氧化物酶(HRP)是用于污染物降解的几种氧化还原酶之一,因其反应条件温和且稳定性高而具有广泛应用。探索用于固定g-CN和HRP以开发光酶耦合催化的高效平台是一个有吸引力的实际课题。g-CN和HRP的耦合效应提高了载流子分离效率并产生更多活性物种,最终实现太阳能驱动的有机污染物非选择性破坏。我们在本研究中详细描述了g-CN的改变和HRP的固定化,并概述了g-CN和HRP光酶耦合的最新进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d3c/9811494/68ddd5cd5f25/d2ra06994f-f1.jpg

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