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Highly Efficient Photocatalytic Performance of Graphene-ZnO Quasi-Shell-Core Composite Material

机译:石墨烯-ZnO准壳核复合材料的高效光催化性能

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摘要

In the present paper, the graphene-ZnO composite with quasi-shell-core structure was successfully prepared using a one-step wet chemical method. The photocatalytic Rhodamine B degradation property and the photoelectrochemical performance of the graphene—ZnO quasi-shell— core composite are dependent on the amount of graphene oxide that is added. When the amount of graphene oxide added is 10 mg, the graphene—ZnO quasi-shell-core composite possesses the optimal photocatalytic degradation efficiency and the best photoelectrochemical performance. An efficient interfacial electric field is established on the interface between the graphene and ZnO, which significantly improves the separation efficiency of the photogenerated electron-hole pairs and thus dramatically increases its photoelectrochemical performance. In addition to the excellent photocatalytic and photoelectrochemical properties, the electron migration ability of the grephene—ZnO quasi-shell—core composite is significantly enhanced due to the graphene coating on ZnO surface; therefore, this material has great potential for application as a substrate material to accept electrons in dye solar cell and in narrow bandgap semiconductor quantum dot sensitized solar cells.
机译:本文采用一步湿化学法成功制备了准壳核结构的石墨烯-ZnO复合材料。石墨烯-ZnO准壳-核复合材料的光催化罗丹明B降解性能和光电化学性能取决于所添加的氧化石墨烯的量。当氧化石墨烯的添加量为10mg时,石墨烯-ZnO准壳核复合材料具有最佳的光催化降解效率和最佳的光电化学性能。在石墨烯和ZnO之间的界面上建立了有效的界面电场,这显着提高了光生电子-空穴对的分离效率,从而显着提高了其光电化学性能。除了优异的光催化和光电化学性能外,由于在ZnO表面涂有石墨烯,从而显着增强了gr烯-ZnO准壳-核复合材料的电子迁移能力。因此,这种材料具有很大的潜力,可以用作染料太阳能电池和窄带隙半导体量子点敏化太阳能电池中接受电子的基底材料。

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