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用于高效吸附和可见光光催化还原Cr(VI)的g-CN/ZnInS复合材料

Composite of g-CN/ZnInS for efficient adsorption and visible light photocatalytic reduction of Cr(VI).

作者信息

Hu Jie, Lu Songhua, Ma Jianfeng, Zhu Fang, Komarneni Sridhar

机构信息

School of Environmental and Safety Engineering, Changzhou University, Changzhou, 213164, Jiangsu, China.

Department of Ecosystem Science and Management and Materials Research Institute, 204 Energy and the Environment Laboratory, The Pennsylvania State University, University Park, PA, 16802, USA.

出版信息

Environ Sci Pollut Res Int. 2022 Oct;29(50):76404-76416. doi: 10.1007/s11356-022-21224-8. Epub 2022 Jun 7.

Abstract

In this paper, the g-CN/ZnInS composite was synthesized by a two-stage hydrothermal method. The microstructure, surface, and optical properties of the composite were thoroughly characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), Brunauer-Emmett-Teller (BET) surface area analysis, and UV-Vis absorption spectroscopic analysis. The removal capacity of Cr(VI) was optimized by using ZnInS loaded in the composite. Meanwhile, the optimal pH environment for the reduction of Cr(VI) was determined to be about pH 3, and the reduction efficiency could reach more than 99% within 60 min. Further, the results of UV-Vis absorption analysis indicated the high and wide range of light absorption by composite compared with pure g-CN. Therefore, the enhanced photocatalytic performance of the composite could be attributed to the well-matched energy band structure between g-CN and ZnInS, which apparently promoted the effective separation and transfer of photogenerated carriers. In addition, the composite showed good stability in the visible light catalytic reaction, and the possible mechanism of the photocatalytic activity of Cr(VI) reduction by the composite was proposed.

摘要

本文采用两步水热法合成了g-CN/ZnInS复合材料。通过X射线衍射(XRD)、扫描电子显微镜(SEM)、X射线光电子能谱(XPS)、布鲁诺尔-埃米特-泰勒(BET)表面积分析和紫外-可见吸收光谱分析对复合材料的微观结构、表面和光学性质进行了全面表征。通过在复合材料中负载ZnInS来优化对Cr(VI)的去除能力。同时,确定Cr(VI)还原的最佳pH环境约为pH 3,在60分钟内还原效率可达99%以上。此外,紫外-可见吸收分析结果表明,与纯g-CN相比,复合材料具有高且宽的光吸收范围。因此,复合材料光催化性能的增强可归因于g-CN和ZnInS之间良好匹配的能带结构,这明显促进了光生载流子的有效分离和转移。此外,该复合材料在可见光催化反应中表现出良好的稳定性,并提出了该复合材料光催化还原Cr(VI)活性的可能机制。

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