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首页> 外文期刊>Journal of land use science >BiOBr-Ag8SnS6 heterostructured nanocomposite photocatalysts: Synthesis, characterization, and photocatalytic application
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BiOBr-Ag8SnS6 heterostructured nanocomposite photocatalysts: Synthesis, characterization, and photocatalytic application

机译:BioBR-AG8SNS6异质纳米复合材料光催化剂:合成,表征和光催化应用

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BiOBr-Ag8SnS6 heterostructured nanocomposite photocatalysts have been synthesized by chemical coprecipitation method in the presence of ethylene glycol solvent at a temperature of 100 degrees C for 4hr. The synthesized BiOBr-Ag8SnS6 heterostructured composites were characterized by X-ray diffraction, transmission electron microscopy, ultraviolet-visible near-infrared spectroscopy, photoluminescence spectroscopy, and Brunauer-Emmett-Teller surface area measurement. X-ray diffraction pattern of BiOBr-Ag8SnS6 heterostructures showed the peaks corresponding to tetragonal structure of BiOBr and orthorhombic structure of Ag8SnS6 nanoparticles, which indicated that they exist in biphasic form in the composite. Photoluminescence studies showed that the BiOBr-Ag8SnS6-1 composite possesses the lowest recombination rate of e(-)-h(+) pairs. Brunauer-Emmett-Teller surface area of BiOBr, Ag8SnS6 nanoparticles, BiOBr-Ag8SnS6-1, and BiOBr-Ag8SnS6-2 was found to be 0.05, 2.35, 1.88, and 1.0m(2)/g, respectively. BiOBr-Ag8SnS6 heterostructured nanocomposite photocatalysts exhibited robust photodegradation towards degradation of indigo carmine dye than that of single-phase BiOBr and Ag8SnS6 nanoparticles under sunlight irradiation. The enhanced photoactivity could be ascribed to heterostructure effect between BiOBr and Ag8SnS6 nanoparticles, an improved visible light absorption and the separation and easy transfer of photogenerated electrons and holes, across the interface of BiOBr-Ag8SnS6. The radical scavenger experiments showed that photogenerated holes and superoxide radicals were the main active species involved in the photodegradation process of indigo carmine.
机译:BioBR-AG8SNS6异质化纳米复合材料光催化剂已经通过化学共沉淀法在乙二醇溶剂存在下在100℃的温度下合成4小时。通过X射线衍射,透射电子显微镜,紫外线可见的近红外光谱,光致发光光谱和Brunauer-Emmett-extraper表面积测量,其特征在于X射线衍射。 BioBR-AG8SNS6异质结构的X射线衍射图案显示了与Ag8SNS6纳米颗粒的BioBR和正交结构的四边形结构相对应的峰,这表明它们在复合材料中以双相形式存在。光致发光研究表明,BioBR-AG8SNS6-1复合材料具有E( - ) - H(+)对的最低重组率。 BioBR,Ag8SNS6纳米粒子,BioBR-AG8SNS6-1和BioBR-AG8SNS6-2的Brunauer-Emmett-Teller表面积分别为0.05,2.35,1.88和1.0M(2)/ g。 BioBR-AG8SNS6异质结构纳米复合材料光催化剂表现出耐植物胭脂红染料的降解而不是阳光照射下的单相BioBR和Ag8SNS6纳米颗粒的稳健光降解。通过BioBR-AG8SNS6的界面,增强的可光度可以归因于BioBR和Ag8Sns6纳米颗粒之间的异质结构效应,改善的可见光吸收和分离和易于光发液的电子和孔的分离。自由基清除剂实验表明,光胶和超氧化物自由基是靛蓝胭脂红的光降解过程中的主要活性物质。

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