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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Specific Analyses of the Active Species on Zn_(0.28)Cd_(0.72)S and TiO2 Photocatalysts in the Degradation of Methyl Orange
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Specific Analyses of the Active Species on Zn_(0.28)Cd_(0.72)S and TiO2 Photocatalysts in the Degradation of Methyl Orange

机译:甲基橙降解中Zn_(0.28)Cd_(0.72)S和TiO2光催化剂上活性物种的特异性分析

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As different light-driven photocatalysts, Zn_(0.28)Cd_(0.72)S and TiO2 showed different properties in the photocatalytic process. In this paper, the comparison was carried out among the properties of Zn_(0.28)Cd_(0.72)S-visible, Zn_(0.28)Cd_(0.72)S-UV, and TiO2-UV light systems in the degradation of methyl orange. After the addition of different types of active species quenchers and the results detected by electron spin resonance, a photoluminescence technique, and a photometric method, it was found that, in the Zn_(0.28)Cd_(0.72)S-UV system, O2, ·OH, and holes played a bigger role, whereas in the TiO2-UV system, ·OH and holes predominated; in the Zn_(0.28)Cd_(0.72)S-visible light system, O2 and holes contributed to the degradation. The differences between the two catalysts lead us to realize the active species and the degradation mechanism in photocatalytic process.
机译:Zn_(0.28)Cd_(0.72)S和TiO2作为不同的光驱动光催化剂在光催化过程中表现出不同的性能。本文对Zn_(0.28)Cd_(0.72)S-visible,Zn_(0.28)Cd_(0.72)S-UV和TiO2-UV光系统在甲基橙降解中的性能进行了比较。加入不同类型的活性物种猝灭剂并通过电子自旋共振,光致发光技术和光度法检测结果后,发现在Zn_(0.28)Cd_(0.72)S-UV系统中,O2 ·OH和空穴的作用更大,而在TiO2-UV系统中,·OH和空穴占主导。在Zn_(0.28)Cd_(0.72)S可见光系统中,O2和空穴有助于降解。两种催化剂之间的差异使我们认识到了光催化过程中的活性物种和降解机理。

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