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用于降解有毒污染物的具有增强全光谱光催化活性的碳酸银修饰的碱式碳酸铋微球

Ag₂CO₃ Decorating BiOCOOH Microspheres with Enhanced Full-Spectrum Photocatalytic Activity for the Degradation of Toxic Pollutants.

作者信息

Li Shijie, Mo Liuye, Liu Yanping, Zhang Huiqiu, Ge Yaming, Zhou Yingtang

机构信息

Key Laboratory of Key Technical Factors in Zhejiang Seafood Health Hazards, Institute of Innovation & Application, Zhejiang Ocean University, Zhoushan 316022, China.

Department of Environmental Engineering, Zhejiang Ocean University, Zhoushan 316022, China.

出版信息

Nanomaterials (Basel). 2018 Nov 7;8(11):914. doi: 10.3390/nano8110914.

Abstract

The development of excellent full-spectrum photocatalysts is of vital significance to its practical application in environmental remediation. Herein, flower-like Ag₂CO₃/BiOCOOH type I heterostructures were prepared via a facile method and exhibited powerful photocatalytic activity by removing various toxic pollutants (rhodamine B, methyl blue, and tetracycline hydrochloride) under simulated sunlight irradiation. The boosted photocatalytic performance is attributed to the expanded range of the absorption spectrum and alleviated separation rate of the photo-induced electrons and holes. The photoluminescence spectra and trapping experiment were applied to clarify the photocatalytic reaction mechanism of Ag₂CO₃/BiOCOOH. The holes and •O₂ were detected as the dominant reactive species involved in pollutant degradation. This work provides a novel full-spectrum-driven photocatalyst of Ag₂CO₃/BiOCOOH, which could effectively degrade toxic pollutants under simulated sunlight.

摘要

开发优异的全光谱光催化剂对其在环境修复中的实际应用具有至关重要的意义。在此,通过一种简便的方法制备了花状Ag₂CO₃/BiOCOOH I型异质结构,并在模拟太阳光照射下通过去除各种有毒污染物(罗丹明B、甲基蓝和盐酸四环素)表现出强大的光催化活性。光催化性能的提高归因于吸收光谱范围的扩大以及光生电子和空穴的分离速率减缓。采用光致发光光谱和捕获实验来阐明Ag₂CO₃/BiOCOOH的光催化反应机理。检测到空穴和•O₂是参与污染物降解的主要活性物种。这项工作提供了一种新型的全光谱驱动光催化剂Ag₂CO₃/BiOCOOH,其在模拟太阳光下可有效降解有毒污染物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c16/6267195/5c8c305229ad/nanomaterials-08-00914-g001.jpg

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