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Rodlike AgI/Ag2Mo2O7 Heterojunctionswith Enhanced Visible-Light-Driven PhotocatalyticActivity

机译:棒状AgI / Ag2Mo2O7异质结增强了可见光驱动的光催化活动

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摘要

Novel AgI/Ag2Mo2O7 heterojunctions were prepared by reacting Ag2Mo2O7 microrods with an aqueous KI solution at room temperature. The composite materials, compared with neat AgI and Ag2Mo2O7, showed much higher activities in the photocatalytic degradation of aqueous rhodamine B, methyl orange, tetracycline hydrochloride, and levofloxacin solutions under visible-light irradiation. The structures, morphologies, and other physicochemical properties of AgI, Ag2Mo2O7, and AgI/Ag2Mo2O7 composites were studied via various characterization techniques. The active species involved in the photocatalytic process were examined via radical-capturing experiments and electron spin resonance. Superoxide anion radicals (O2) and photogenerated holes (h+) were found to be the main active species. Photocatalytic mechanisms were proposed and reasons for the enhanced photocatalytic activity were explained.
机译:通过使Ag2Mo2O7微棒与KI水溶液在室温下反应来制备新型AgI / Ag2Mo2O7异质结。与纯AgI和Ag2Mo2O7相比,该复合材料在可见光照射下对若丹明B水溶液,甲基橙,盐酸四环素和左氧氟沙星溶液的光催化降解具有更高的活性。通过各种表征技术研究了AgI,Ag2Mo2O7和AgI / Ag2Mo2O7复合材料的结构,形态和其他理化性质。通过自由基捕获实验和电子自旋共振研究了参与光催化过程的活性物种。发现超氧阴离子自由基( O2 )和光生空穴(h + )是主要的活性物种。提出了光催化机理,并解释了提高光催化活性的原因。

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