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首页> 外文期刊>Journal of Cleaner Production >Perovskite cesium lead bromide quantum dots: A new efficient photocatalyst for degrading antibiotic residues in organic system
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Perovskite cesium lead bromide quantum dots: A new efficient photocatalyst for degrading antibiotic residues in organic system

机译:钙钛矿铯溴化铅量子点:一种用于降解有机系统中抗生素残留的新型高效光催化剂

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摘要

The efficient removal of antibiotic residues has drawn wide interests; however, little attention has been focused on treating them in organic system. Inorganic perovskite cesium lead bromide quantum dots were successfully prepared by anti-solvent precipitation and the prepared cesium lead bromide quantum dots were well-characterized. The photocatalytic activity was evaluated by degradation of tetracycline hydrochloride in ethanol as a model reactant under visible light for the first time. 76% tetracycline hydrochloride and 70% methyl orange were efficiently degraded in 30 min, which illustrate cesium lead bromide quantum dots could work as efficient photocatalyst for the degradation of organic pollutants in ethanol. The photoelectric conversion efficiency and photoluminescence quantum yields were measured and calculated. The photodegradation process was systematically analyzed by full-wavelength absorption. It is found that superoxide radicals may play a major role in the photocatalytic degradation process by capture experiments and the reaction mechanism has been proposed. Cesium lead bromide is not stable in water and may be converted into perovskite-related phase with water, which will result in the loss of photocatalytic activity. This work indicates that cesium lead bromide may act as an efficient photocatalyst for the removal of tetracycline hydrochloride and methyl orange in organic system, which may benefit the development/application of novel photocatalysts for special applications. (C) 2019 Elsevier Ltd. All rights reserved.
机译:有效去除抗生素残留物引起了广泛的兴趣。然而,很少有注意力集中在有机体系中对其进行处理。通过反溶剂沉淀法成功制备了无机钙钛矿型溴化铯铯量子点,并很好地表征了所制备的溴化铯铯量子点。通过在可见光下首次降解作为模型反应物的乙醇中的四环素盐酸盐来评估光催化活性。在30分钟内有效降解了76%的四环素盐酸盐和70%的甲基橙,这说明溴化铯铯量子点可作为降解乙醇中有机污染物的有效光催化剂。测量并计算光电转换效率和光致发光量子产率。通过全波长吸收系统地分析了光降解过程。通过捕获实验发现超氧自由基可能在光催化降解过程中起主要作用,并提出了反应机理。溴化铯铅在水中不稳定,并且可能与水转化为钙钛矿相关的相,这将导致光催化活性的丧失。这项工作表明,溴化铯铯可以作为一种有效的光催化剂,用于去除有机体系中的盐酸四环素和甲基橙,这可能有益于特殊用途的新型光催化剂的开发/应用。 (C)2019 Elsevier Ltd.保留所有权利。

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