Direct Z-scheme 1D/2D WO2.72/ZnIn2S4 hybrid photocatalysts with highly-efficient visible-light-driven photodegradation towards tetracycline hydrochloride removal

光降解 盐酸四环素 四环素 可见光谱 光催化 盐酸盐 方案(数学) 化学 罗丹明B 光化学 降级(电信) 化学工程 水溶液 亚甲蓝 甲基橙 漫反射红外傅里叶变换 催化作用 核化学 材料科学 光电子学 有机化学 工程类 数学 生物化学 抗生素 数学分析
作者
Wei Chen,Ling Chang,Shi‐Bin Ren,Zhicai He,Guobo Huang,Xiaoheng Liu
出处
期刊:Journal of Hazardous Materials [Elsevier]
卷期号:384: 121308-121308 被引量:165
标识
DOI:10.1016/j.jhazmat.2019.121308
摘要

There are increasing environmental concerns of serious pollution from emission of antibiotic wastewater. Herein, a series of direct Z-scheme WO2.72/ZnIn2S4 (WOZIS) hybrid photocatalysts composed of one-dimensional (1D) WO2.72 (WO) nanorods and two-dimensional (2D) ZnIn2S4 (ZIS) nanosheets have been designed and constructed for tetracycline hydrochloride (TCH) degradation without presence of solid-state electron mediators. The crystalline phase, chemical composition, morphology, optical properties and photocatalytic activity of the as-prepared samples were characterized by the XRD, XPS, SEM, HRTEM, BET, UV–vis DRS, and PL. Obviously, all the WOZIS hybrid photocatalysts exhibited significantly enhanced photocatalytic activity towards TCH degradation. Meanwhile, WOZIS-1 sample with WO/ZIS molar ratio of 1:1 showed the highest photocatalytic activity. The significantly enhanced photoactivity of WOZIS hybrid photocatalyst was due to Z-scheme charge separation mechanism based on the build of tight interfacial contacts between WO nanorods and ZIS nanosheets, thereby driving efficient charge separation. Moreover, the high photocatalytic stability of as-prepared WOZIS-1 hybrid sample was revealed through seven successive cycling reactions.
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