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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Synthesis and characterization of CdS@ZnO nanoribbon@quantum dot and their enhanced visible-light-driven photocatalytic activities
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Synthesis and characterization of CdS@ZnO nanoribbon@quantum dot and their enhanced visible-light-driven photocatalytic activities

机译:CDS @ ZnO纳米丝@量子点的合成与表征及其增强的可见光触控光催化活性

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摘要

CdS/ZnO nanoribbon/quantum dot was prepared using thermal decomposition method. Size and distribution of ZnO quantum dots on CdS nanobelt were controlled by concentrations of zinc acetate ethanol solution and thermal decomposition temperature. The structure and optical properties of CdS nanobelts and CdS/ZnO heterostructures are studied by XRD, TEM, PL and Raman scattering and UV-Vis absorption spectra. The photocatalytic performances of CdS nanobelts and CdS/ZnO heterostructures are tested by photocatalytic degradation of RhB aqueous solution under visible light irradiation. Compared with that (83.57%) of CdS nanobelts, the degradation rate (88.66%) of RhB using CdS/ZnO heterostructures as catalyst is significantly improved, which suggests better development prospect in photocatalytic technology and photoelectric device.
机译:使用热分解法制备CDS / ZnO纳米孔/量子点。 通过乙酸锌乙醇溶液和热分解温度的浓度控制Cds纳米槽上的ZnO量子点的尺寸和分布。 通过XRD,TEM,PL和拉曼散射和UV-Vis吸收光谱研究CDS纳米座和Cds / ZnO异质结构的结构和光学性质。 通过在可见光照射下的光催化降解RHB水溶液的光催化降解测试CDS纳米座和Cds / ZnO异质结构的光催化性能。 与CDS / ZnO异质结构作为催化剂的CDS / ZnO异质结构的降解速率(88.66%)的降解速率(88.66%)显着提高,这表明光催化技术和光电装置的更好的发展前景。

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