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Wide spectral photoresponse of template assisted out of plane grown ZnO/NiO composite nanowire photodetector

机译:模板的宽光谱光响应辅助平面成长ZnO / NiO复合纳米线光电探测器

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摘要

Zinc oxide (ZnO) one-dimensional nanostructures are extensively used in ultra-violet (UV) detection. To improve the optical sensing capability of ZnO, various nickel oxide (NiO) based p-n junctions have been employed. ZnO/NiO heterojunction based sensing has been limited to UV detection and not been extended to the visible region. In the present work, p-NiO/n-ZnO composite nanowire (NW) heterojunction based UV-visible photodetector is fabricated. A porous anodic aluminum oxide template based electrochemical deposition method is adopted for well separated and vertically aligned growth of composite NWs. The photoresponse is studied in an out of plane contact configuration. The fabricated photodetector shows fast response under UV-visible light with a rise and decay time of tens of ms. The wide spectral photoresponse is analyzed in terms of conduction from defect states of ZnO and interfacial defects during p-n junction formation. Light interaction with heterojunction along the length of the composite NW results in enhanced visible photoresponse of the detector and is further supported by simulation.
机译:氧化锌(ZnO)一维纳米结构广泛用于紫外(UV)检测。为了提高ZnO的光学传感能力,已经采用了各种基于氧化镍(NIO)的P-N结。基于ZnO / NIO异质结基的感测仅限于UV检测,而不是延伸到可见区域。在本作工作中,制造了P-NiO / N-ZnO复合纳米线(NW)异质结的UV可见光探测器。采用多孔阳极氧化铝基基电化学沉积方法,用于良好分离和垂直对准复合NWS的生长。在平面接触配置中研究了光孔。制造的光电探测器在UV可见光下显示出快速响应,其上升和衰减时间为几十毫秒。在P-N结形成期间的ZnO缺陷状态和界面缺陷的传导方面分析了宽光谱光孔。沿复合NW的长度与异质结的光相互作用导致检测器的增强可见光光响应,并通过模拟进一步支持。

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