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Aniline chlorination by in situ formed Ag-Cl complexes under simulated solar light irradiation

机译:在模拟太阳光照射下原位形成的Ag-Cl络合物进行苯胺氯化

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Ag speciation in a chloride medium was dependent upon the Cl/Ag ratio after releasing into surface water. In this study, the photoreaction of in situ formed Ag-Cl species and their effects on aniline photochlorination were systematically investigated. Our results suggested that formation of chloroaniline was strongly relevant to the Cl/Ag ratio and could be interpreted using the thermodynamically expected speciation of Ag in the presence of Cl-. AgCl was the main species responsible for the photochlorination of aniline. Both photoinduced hole and center dot OH drove the oxidation of Cl- to radical center dot Cl, which promoted the chlorination of aniline. Ag-0 formation was observed from the surface plasmon resonance absorption during AgCl photoreaction. This study revealed that Ag+ released into Cl--containing water may result in the formation of chlorinated intermediates of organic compounds under solar light irradiation.
机译:释放到地表水中后,氯化物介质中的银形态取决于Cl / Ag比。在这项研究中,系统地研究了原位形成的Ag-Cl物种的光反应及其对苯胺光氯化的影响。我们的结果表明,氯苯胺的形成与Cl / Ag的比例密切相关,并且可以用在存在Cl-的情况下Ag的热力学预期形态来解释。 AgCl是负责苯胺光氯化的主要物质。光致空穴和中心点OH都将Cl-氧化为自由基中心点Cl,从而促进了苯胺的氯化。从AgCl光反应过程中的表面等离子体共振吸收观察到Ag-0的形成。这项研究表明,在太阳光照射下,释放到含氯水中的Ag +可能导致有机化合物的氯化中间体形成。

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