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首页> 外文期刊>Catalysis Today >Z-scheme heterostructure BiOCl-Ag-AgBr with enhanced sunlight-driven photocatalytic activity in simultaneous removal of Cr6+ and phenol contaminants
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Z-scheme heterostructure BiOCl-Ag-AgBr with enhanced sunlight-driven photocatalytic activity in simultaneous removal of Cr6+ and phenol contaminants

机译:Z-方案异质结构BioCl-AgBr,具有增强的阳光驱动的光催化活性,同时除去Cr6 +和酚污染物

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In this study, we constructed a Z-scheme photocatalyst BiOCl-Ag-AgBr for the first time, with the aim of simultaneously removing the heavy metal Cr6+ ions and organic pollutant phenol in waste water. It was found that Ag nanoparticles (NPs) were selectively deposited on the {001} facets of BiOCl nanosheets in the process of photoreduction, and the outer layer of Ag NPs was further transformed into AgBr in the presence of Fe3+ and Br- . Compared with BiOCl and BiOCl-Ag, the ternary structure BiOCl-Ag-AgBr displays obviously higher photocatalytic activity for both Cr6+ reduction and phenol degradation. There exists a synergetic effect between Cr6+ ions and phenol for enhancing the photocatalytic activity of photocatalysts, i.e., the presence of Cr6+ ions can promote the degradation of phenol, while the existence of phenol also accelerates the reduction of Cr6+. The radical trapping experiments confirmed that BiOCl-Ag-AgBr is a Z-scheme semiconductor and all of e- , O center dot 2 - , center dot OH, and h+ take part in the reactions of Cr6+ reduction and phenol degradation. The superior photocatalytic activity of BiOCl-Ag-AgBr should be ascribed to both its excellent sunlight response and the effective separation efficiency of photogenerated charge carriers with high redox ability.
机译:本研究首次构建了Z型光催化剂BiOCl-Ag-AgBr,旨在同时去除废水中的重金属Cr6+离子和有机污染物苯酚。研究发现,在光还原过程中,银纳米颗粒被选择性地沉积在BiOCl纳米片的{001}面上,在Fe3+和Br-存在下,银纳米颗粒的外层进一步转化为AgBr。与BiOCl和BiOCl-Ag相比,三元结构BiOCl-Ag-AgBr对Cr6+还原和苯酚降解均表现出明显的光催化活性。Cr6+离子与苯酚之间存在协同效应,可以提高光催化剂的光催化活性,即Cr6+离子的存在可以促进苯酚的降解,而苯酚的存在也会加速Cr6+的还原。自由基捕获实验证实BiOCl-Ag-AgBr是一种Z型半导体,所有的e-、O-中心点2-、中心点OH和h+都参与Cr6+还原和苯酚降解反应。BiOCl-Ag-AgBr优异的光催化活性应归功于其良好的阳光响应和具有高氧化还原能力的光生载流子的有效分离效率。

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