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ZnS 包覆 ZnO 纳米线的光致发光和光电导性。

Photoluminescence and photoconductivity of ZnS-coated ZnO nanowires.

机构信息

Department of Solid State Physics, Indian Association for the Cultivation of Science, Jadavpur, Kolkata 700032, India.

出版信息

ACS Appl Mater Interfaces. 2010 Feb;2(2):408-12. doi: 10.1021/am900686c.

Abstract

ZnO nanowires (NWs) with a ZnS coating are synthesized in order to modify the surface without changing the diameter of the NWs. They have the wurtzite ZnO at the core and a cubic ZnS at the outer layer. The NWs show a sharp ultraviolet and a broad visible emission of the photoluminescence spectra. Surface modification has led to a change in the position of the maxima of the visible emission in ZnO-ZnS NWs. The photocarrier relaxation under steady UV illumination occurs in ZnO NW arrays but is absent in ZnO-ZnS NW arrays. The dark current value for both type of NWs are similar, whereas the photocurrent value is much higher in the surface-modified NWs. Higher photocurrent value indicates a transport of the photogenerated carriers from the ZnS layer to ZnO during UV illumination. The carrier transport mechanism is proposed through a model.

摘要

为了在不改变纳米线直径的情况下对其表面进行修饰,合成了 ZnO 纳米线(NWs)并进行了 ZnS 涂层。它们具有纤锌矿结构的 ZnO 作为内核和立方结构的 ZnS 作为外壳。这些 NWs 在光致发光光谱中表现出尖锐的紫外发射和宽的可见发射。表面修饰导致 ZnO-ZnS NWs 中可见发射的最大值位置发生了变化。在稳定的紫外光照射下,光生载流子的弛豫发生在 ZnO NW 阵列中,但在 ZnO-ZnS NW 阵列中不存在。两种 NWs 的暗电流值相似,而在表面修饰的 NWs 中光电流值要高得多。较高的光电流值表明在紫外光照射下,光生载流子从 ZnS 层向 ZnO 的传输。通过一个模型提出了载流子输运机制。

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