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Controlled fabrication and photocatalytic properties of a three-dimensional ZnO nanowire/reduced graphene oxide/CdS heterostructure on carbon cloth

机译:制造和控制光催化一个三维的氧化锌的性质纳米线/减少氧化石墨烯/ cd异质结构碳布

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摘要

A novel ZnO/reduced graphene oxide (RGO)/CdS heterostructure was successfully synthesized via a facile three-step solution method. RGO serves as an interlayer between ZnO nanowires and CdS quantum dots (QDs), which provides a high speed charge transfer channel, leading to an enhanced charge separation efficiency. Under UV light irradiation, the photocatalytic activity of the ZnO/RGO/CdS heterostructure is 4.0 times and 1.9 times as high as those of pure ZnO and ZnO/RGO, respectively. Under visible light irradiation, the ZnO/RGO/CdS heterostructure shows a dramatic visible light photocatalytic activity which is 2.3 times higher than that of the ZnO/CdS photocatalyst. The photocurrent of the ZnO/RGO/ CdS heterostructure under UV light irradiation was greatly enhanced and a photocurrent under visible light irradiation was observed. The enhanced photocatalytic activity and the extended light adsorption spectrum originate from the type-ll ZnO/CdS band alignment and the introduction of RGO as a charge mediator. Our results might open up a promising way to develop novel and highly efficient RGO-based heterostructure photocatalysts.
机译:一种新型氧化锌/石墨烯氧化物减少(RGO) / cd异质结构已成功合成通过简单三步解决方法。氧化锌纳米线之间的夹层和cd量子点(量子点),它提供了一个高速度电荷转移通道,导致一个增强电荷分离效率。照射的光催化活性氧化锌/ RGO / cd异质结构的4.0倍和1.9倍的纯氧化锌和氧化锌/ RGO,分别。氧化锌/ RGO / cd异质结构显示了戏剧性的可见光催化活性2.3倍的氧化锌/ cd光催化剂。cd紫外线辐照下异质结构极大的增强和光电流在吗可见光照射被观察到。增强的光催化活性和扩展光吸附谱源自输入ll氧化锌/ cd乐队和一致性引入RGO作为中介收费。结果可能会打开一个有前途的方法来培养小说和高效RGO-based异质结构催化剂。

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