首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Synthesis of novel p-n-p BiOBr/ZnO/BiOI heterostructures and their efficient photocatalytic performances in removals of dye pollutants under visible light
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Synthesis of novel p-n-p BiOBr/ZnO/BiOI heterostructures and their efficient photocatalytic performances in removals of dye pollutants under visible light

机译:新型P-N-P BIOBR / ZnO / Bio / Bio / Bio / BioIsstructure的合成及其高效的光催化性能在可见光下去除染料污染物的缺失

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摘要

Various photocatalysts were synthesized through deposition of BiOBr and BiOI on ZnO in the present research. The formation of heterostructures was studied by different instruments. The photocatalytic performances were studied by degrading different dyes, as water contaminants. The results showed that the ternary BiOBr/ZnO/BiOI (20 %) heterostructure has excellent photocatalytic ability in degradations of methylene blue, fuchsine, rhodamine B, and methyl orange, which was about 12.5, 41.5, 59, and 75-folds as high as the pristine ZnO, respectively. The increased photodegradation ability was ascribed to the more absorption of visible light, large specific surface area, and the construction of p-n-p heterojunctions at the interface of p-BiOBr, n-ZnO, and p-BiOI semiconductors. It was proved that the center dot O-2(-), OH center dot, and h(+) species play important roles in photocatalytic performances. In our opinion, this study provides a new procedure for fabrication of efficient p-n-p heterojunction photocatalysts based on ZnO, which could solve environmental problems.
机译:通过在本研究中通过ZnO沉积BioBR和BioI来合成各种光催化剂。通过不同的仪器研究异质结构的形成。通过降解不同的染料来研究光催化性能,作为水污染物。结果表明,三元BioBR / ZnO / BioI(20%)异质结构具有优异的光催化能力,降解亚甲基蓝,葡萄酒,罗丹明B和甲基橙,其约为12.5,41.5,59和75倍作为原始ZnO。在P-BioBR,N-ZnO和P-Bioi半导体的界面处,可见光降解能力增加的光降解能力置于较高的可见光,大的比表面积和构建P-N-P杂交障碍。事实证明,中心点O-2( - ),OH中心点和H(+)物种在光催化性能中起重要作用。在我们看来,本研究提供了一种基于ZnO的高效P-N-P异结明光催化剂的新方法,可以解决环境问题。

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