Tailoring the bandgap of zinc indium sulfide/boroncarbonitride heterostructure for efficient photocatalytic CO2 reduction

三乙醇胺 光催化 带隙 材料科学 拉曼光谱 化学工程 异质结 三元运算 硫化物 傅里叶变换红外光谱 催化作用 化学 分析化学(期刊) 有机化学 光电子学 物理 计算机科学 光学 程序设计语言 工程类
作者
K. Yogesh Kumar,L. Parashuram,M.K. Prashanth,H. Shanavaz,C.B. Pradeep Kumar,V.S. Anusuya Devi,Fahd Alharethy,Byong‐Hun Jeon,M.S. Raghu
出处
期刊:Journal of environmental chemical engineering [Elsevier]
卷期号:11 (5): 110867-110867 被引量:5
标识
DOI:10.1016/j.jece.2023.110867
摘要

Many efforts have been devoted to the reduction of atmospheric CO2 and the development of a route map for sustainability in the energy and environmental sectors. The present work describes the bandgap tailoring of the ternary metal sulfide ZnIn2S4 (ZIS) with two-dimensional (2D) boroncarbonitride (BCN) and a constructed heterostructure. The ratio of BCN to ZIS has been varied in different ratios and examined for morphological, structural, and optical characterization. The crystalline structure of the synthesized materials was subjected to Materials Studio software, which examined the geometry, stacking, and interaction between ZIS and layered BCN. ZIS/BCN-1 is found to be efficient compared to all other counter catalysts under study. Diffuse reflectance infrared Fourier transform (DRIFT) and Gas Chromatography Mass spectrophotometry (GC-MS) analysis confirm the formation of carbon monoxide and methane gas. In the presence of ZIS/BCN-1, it was found to produce 158 and 57 μmol g−1h−1 of CO and CH4, respectively, during CO2 reduction under visible light. The effect of sacrificial agents has been investigated, and found that triethanolamine (TEOA) showed enhanced activity compared to others. The mechanism of photocatalysis has been discussed in detail and found to form type-II heterostructure through the interface between ZIS and BCN. The stability of ZIS/BCN-1 is good even after 5 cycles of the CO2 reduction experiment, and no structural changes were found.

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