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Mace-Shaped Cu7S4 NW/ECF Composites for Photocatalytic Degradation of Antibiotics

机译:梅斯形的CU7S4 NW/ECF复合材料,用于抗生素的光催化降解

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摘要

Firstly, Sb-SnO2/potassium titanate (Sb-SnO2/ KTO) was fabricated by a sol-gel method, it was named ECF. and then Cu7S4 nanorod arrays were grown on the surface of ECF by a hydrothermal method (Cu7S4 NW/ECF).This article discusses the preparation method of Cu7S4 NW/ECF composite photocatalyst to solve the problem of degradation of tetracycline hydrochloride under visible light. It is found that Cu7S4 NW/ECF composite materials can be successfully prepared when Cu: S= 1: 1, and the Cu7S4 NW/ECF composite has stronger photocatalytic activity then others, The degradation efficiency of tetracycline hydrochloride (TCH) by the composite can reach 98% after 2 h. which is mainly attributed to the fact that Cu7S4 is a near-infrared material, and a tight heterojunction can be formed between Cu7S4 and ECF, which expands the light response range of the material to a certain extent. At the same time, the direct Z-type mechanism of Cu7S4 NW/ECF composite in the process of photocatalysis is proposed, which is conducive to the separation of electrons and holes. Therefore, the Cu7S4 NW/ECF composite material can effectively degrade tetracycline hydrochloride.
机译:首先,SB-SNO2/钛钾(SB-SNO2/ KTO)是通过Sol-Gel方法制造的,称为ECF。然后通过热液方法(CU7S4 NW/ECF)在ECF表面生长CU7S4纳米棒阵列。本文讨论了CU7S4 NW/ECF复合光催化剂的制备方法,以解决可见光四边形二级联氯化四氯化苯二元降解的问题。发现Cu7S4 NW/ECF复合材料可以在Cu:s = 1:1时成功制备,并且CU7S4 NW/ECF复合材料具有更强的光催化活性,而其他复合型氢化菌(TETERCLINE)氢化盐(TCH)的降解效率则通过复合材料的降解效率。 2小时后达到98%。这主要归因于以下事实:CU7S4是一种近红外材料,并且可以在Cu7S4和ECF之间形成紧密的异质结,这在一定程度上扩大了材料的光响应范围。同时,提出了在光催化过程中CU7S4 NW/ECF复合材料的直接Z型机理,这有利于电子和孔的分离。因此,CU7S4 NW/ECF复合材料可以有效地降解四环素盐酸盐。

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