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Photodegradation of organic dyes via competitive direct reduction/indirect oxidation on InSnS2 under visible light

机译:在可见光下通过竞争性直接还原/间接氧化在InSnS2上对有机染料的光降解

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摘要

A visible-light-responsive photocatalyst, SnS2, was prepared by a rapid microwave-assisted method. This photocatalyst showed a narrow band gap (2.0 eV) and a broad-spectrum response in the range of 400-800 nm. To enhance its photocatalytic activity, the surface of SnS2 was modified with indium-doping and loading of a noble metal. The photocatalytic activity of SnS2, InSnS2, and Pt/InSnS2 was evaluated by photodegradation of methyl orange (MO) and rhodamine B (RhB) under visible light. While direct reduction via a photoelectron was the major reaction in the degradation of MO, indirect oxidation (deethylation) via reactive oxygen species (center dot OH and center dot O-2 (-)) in the degradation of RhB was accompanied subsequently with direct reduction (cycloreversion). Therefore, photocatalytic efficiency and the mechanism for photodegradation of organic dyes depended on the types of organic dyes.
机译:通过快速微波辅助方法制备可见光响应型光催化剂SnS2。这种光催化剂在400-800 nm范围内显示出窄的带隙(2.0 eV)和广谱响应。为了增强其光催化活性,通过铟掺杂和负载贵金属对SnS2的表面进行了改性。 SnS2,InSnS2和Pt / InSnS2的光催化活性通过可见光下甲基橙(MO)和若丹明B(RhB)的光降解来评估。尽管通过光电子直接还原是MO降解的主要反应,但在RhB降解过程中通过活性氧(中心点OH和中心点O-2(-))间接氧化(脱乙基)随后伴随着直接还原(环回)。因此,有机染料的光催化效率和光降解​​机理取决于有机染料的类型。

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