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首页> 外文期刊>Nanoscale >Wire-shaped ultraviolet photodetectors based on a nanostructured NiO/ZnO coaxial p-n heterojunction via thermal oxidation and hydrothermal growth processes
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Wire-shaped ultraviolet photodetectors based on a nanostructured NiO/ZnO coaxial p-n heterojunction via thermal oxidation and hydrothermal growth processes

机译:基于一个Wire-shaped紫外线光电探测器纳米氧化镍/氧化锌同轴pn异质结通过热氧化和热液的增长流程

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摘要

We report the facile fabrication of wire-shaped ultraviolet photodetectors (WUPDs) by employing a nanostructured zinc oxide (ZnO)/nickel oxide (NiO) coaxial p-n heterojunction. The WUPD consists of a ZnO/NiO coaxial Ni wire and a twisted gold (Au) wire where the Ni and Au are used as the anode and cathode, respectively. For the coaxial p-n heterojunction, the NiO nanostructures (NSs) and the ZnO nanorods (NRs) are subsequently formed on the surface of Ni wire via thermal oxidation and hydrothermal growth processes. With an applied bias of -3.5 V, the WUPD exhibits good photoresponsivity of 7.37 AW(-1) and an external quantum efficiency of 28.1% at an incident light wavelength of 325 nm. Under the UV illumination at a wavelength of 365 nm, the dark current and photocurrent are -3.97 x 10(-7) and -8.47 x 10(-6) A, respectively. For enhancing the photocurrent, the WUPD is threaded through a silver (Ag) coated glass tube which acts as a waveguide to concentrate the UV light of 365 nm on the WUPD. As a result, the photocurrent is significantly improved up to -1.56 x 10(-5) A (i.e., 1.84 times) at the reverse bias of -3.5 V.
机译:我们报告wire-shaped的简单加工通过使用紫外线光电探测器(WUPDs)纳米氧化锌)/氧化镍(NiO)同轴pn异质结。由一个氧化锌/ NiO同轴倪线和一个扭曲的黄金(Au)电线倪和非盟在哪里分别用作阳极和阴极。同轴pn异质结,NiO纳米结构(NSs)和氧化锌纳米棒(NRs)随后形成镍表面的线吗通过热氧化和热液的增长流程。WUPD展品photoresponsivity 7.37好亚历山大-伍尔兹(1)和外部量子效率28.1%的入射光波长325 nm。365紫外光照下的波长nm,光电流和暗电流是-3.97倍10(7)和-8.47 x 10(6),分别。增强光电流,WUPD螺纹通过银(Ag)镀膜玻璃管作为波导集中紫外线WUPD 365海里的。显著提高光电流-1.56 x 10(5)(即1.84倍)反向偏压的-3.5 V。

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