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首页> 外文期刊>CERAMICS INTERNATIONAL >A controlled anion exchange strategy to synthesize Bi2S3 nanoparticles/plate-like Bi2WO6 heterostructures with enhanced visible light photocatalytic activities for Rhodamine B
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A controlled anion exchange strategy to synthesize Bi2S3 nanoparticles/plate-like Bi2WO6 heterostructures with enhanced visible light photocatalytic activities for Rhodamine B

机译:一种受控的阴离子交换策略,以合成具有增强的可见光对罗丹明B的Bi2S3纳米颗粒/板状Bi2WO6异质结构

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摘要

Bi2S3/Bi2WO6 semiconductor heterostructures with enhanced visible light photocatalytic activity were firstly prepared through a facile in-situ anion exchange approach at relatively low temperature, using thioacetamide as sulphur source and Bi2WO6 nanosheets as precursors. Bi2S3 nanoparticles decorated on the surface of 2D plate-like Bi2WO6 nanosheets were analyzed by using X-ray diffraction, X-ray photoelectron spectroscopy, transmission electron microscopy etc. Photocatalytic experiments indicate that such Bi2S3/Bi2WO6 composites possess higher photocatalytic activity for the degradation of Rhodamine B under visible light irradiation in comparison with pure Bi2S3 or Bi2WO6. Among Bi2S3/Bi2WO6 composites with different contents of Bi2S3, the Bi2S3/Bi2WO6 composite with 30% Bi2S3 exhibits the highest photocatalytic efficiency. Based on the calculated energy band positions and photoluminescence spectrum, it was postulated that enhanced photocatalytic property could be ascribed to the reduction of the recombination rate of photogenerated electron-hole pairs and the heterojunction interface. Moreover, these results suggest that the heterostructured photocatalysts can be potentially applied in environmental protection and waste water treatment. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:首先以硫代乙酰胺为硫源,以Bi2WO6纳米片为前驱体,通过比较容易的在较低温度下进行原位阴离子交换的方法,制备了具有较高可见光光催化活性的Bi2S3 / Bi2WO6半导体异质结构。利用X射线衍射,X射线光电子能谱,透射电子显微镜等对2D板状Bi2WO6纳米片表面装饰的Bi2S3纳米粒子进行了分析。与纯Bi2S3或Bi2WO6相比,若丹明B在可见光照射下。在具有不同含量的Bi2S3的Bi2S3 / Bi2WO6复合材料中,具有30%Bi2S3的Bi2S3 / Bi2WO6复合材料表现出最高的光催化效率。基于计算出的能带位置和光致发光光谱,推测增强的光催化性能可以归因于光生电子-空穴对和异质结界面的复合速率的降低。而且,这些结果表明,异质结构光催化剂可潜在地用于环境保护和废水处理。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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