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Preparation and Photocatalytic Activity Study of p-CuO/n-ZnO composites

机译:P-CuO / N- ZnO复合材料的制备和光催化活性研究

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In this paper, efficacy of p-n junction p-CuO/n-ZnO composite is assessed as a potential photocatalyst by monitoring degradation of methylene blue (MB) in the presence of UV light. The p-n junction photocatalyst, p-CuO/n-ZnO, was prepared by ball milling of ZnO and CuO in water. The structural properties of p-CuO/n-ZnO composite were characterized by x-ray diffractometer and surface charge properties via zeta potential measurement. The degradation of MB in the presence of composite powder was monitored via UV-vis spectrometer. Various studies affecting the degradation rate of MB were conducted as a function of weight fraction of CuO in the composite and ball milling time. The highest degradation rate of MB was achieved in CuO (10 Wt.%)/ZnO for which high negative zeta potential was recorded. The MB degradation efficiency was found to decrease with the samples ball milled for time longer than 12 hours due to increased agglomeration of particles. The mechanisms that influence the photocatalytic activity of p-CuO/n-ZnO are discussed based on the p-n junction principle.
机译:本文通过在UV光存在下监测亚甲基蓝(MB)的降解来评估P-N结的功效作为电位光催化剂。通过ZnO和CuO在水中制备P-N结光催化剂,P-CuO / N-ZnO。通过Zeta电位测量的X射线衍射仪和表面电荷性能表征了P-CuO / N-ZnO复合物的结构性能。通过UV-Vis光谱仪监测在复合粉末存在下MB的降解。影响影响MB的降解速率的各种研究是在复合材料和球磨时间中CuO重量分数的函数。在CuO(10wt.%)/ ZnO中获得了Mb的最高降解速率,其中记录了高负Zeta电位。发现MB降解效率随着颗粒的附聚而超过12小时的样品球磨削而减少。基于P-N结原理讨论影响P-CuO / N-ZnO的光催化活性的机制。

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