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用于太阳能驱动有机污染物降解的CuS/O,N-CNT复合材料的光催化性能增强

Enhanced photocatalytic performance of CuS/O,N-CNT composite for solar-driven organic contaminant degradation.

作者信息

Mishra Soumya Ranjan, Panigrahi Biswaranjan, Gadore Vishal, Sarkar Nityananda, Ahmaruzzaman Md

机构信息

Department of Chemistry, National Institute of Technology Silchar, Silchar, Assam, 788010, India.

出版信息

Sci Rep. 2024 Aug 4;14(1):18022. doi: 10.1038/s41598-024-68770-4.

Abstract

Herein, a hydrothermal etching approach was used to generate an innovative CuS/O,N-CNT composite. The hydrothermal etching of g-CN led to the creation of O,N-CNT, with ethanol as the oxygen source. The SEM and TEM characterizations confirmed the formation of CNT, whereas the XPS analysis proved the doping of oxygen and nitrogen in the CNT matrix along with the incorporation of CuS. Under sun irradiation, the produced CuS/O,N-CNT showed outstanding photocatalytic efficiency, eliminating methyl orange and methylene blue dyes with 97.21% and 98.11% efficacy, respectively. Adding hydrothermally etched O,N-CNT increased light absorption and charge migration kinetics, as can be studied from the UV-DRS and PL analysis; hence, the observed improvements in light absorption and charge transfer pathways contributed to the CuS/O,N-CNT composite's enhanced photocatalytic activity, indicating its potential for efficient elimination of organic contaminants under solar irradiation. The catalyst demonstrated high reusability performance up to six cycles and significantly degraded other dyes. Scavenger analysis, along with VB-XPS and UV-DRS analysis, aid in developing a photocatalytic mechanism that confirms the participation of hydroxyl and superoxide radicals in the degradation process.

摘要

在此,采用水热蚀刻法制备了一种新型的CuS/O,N-CNT复合材料。以乙醇为氧源,通过水热蚀刻g-CN生成了O,N-CNT。扫描电子显微镜(SEM)和透射电子显微镜(TEM)表征证实了碳纳米管(CNT)的形成,而X射线光电子能谱(XPS)分析证明了氧和氮在CNT基体中的掺杂以及CuS的掺入。在阳光照射下,制备的CuS/O,N-CNT表现出优异的光催化效率,分别以97.21%和98.11%的效率消除了甲基橙和亚甲基蓝染料。从紫外可见漫反射光谱(UV-DRS)和光致发光(PL)分析可以看出,添加水热蚀刻的O,N-CNT增加了光吸收和电荷迁移动力学;因此,观察到的光吸收和电荷转移途径的改善有助于提高CuS/O,N-CNT复合材料的光催化活性,表明其在太阳辐射下有效消除有机污染物的潜力。该催化剂在六个循环内表现出高可重复使用性能,并能显著降解其他染料。清除剂分析以及价带XPS和UV-DRS分析有助于建立光催化机理,证实羟基和超氧自由基参与了降解过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08c1/11298534/f98b95fb0a9f/41598_2024_68770_Fig1_HTML.jpg

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