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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Realization of a self-powered ZnO MSM UV photodetector with high responsivity using an asymmetric pair of Au electrodes
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Realization of a self-powered ZnO MSM UV photodetector with high responsivity using an asymmetric pair of Au electrodes

机译:使用一对不对称的Au电极实现具有高响应度的自供电ZnO MSM UV光电探测器

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摘要

We demonstrate a novel type of ZnO self-powered photodetector based on the asymmetric metal-semiconductor-metal (MSM) structure: one Au interdigitated electrode with wide fingers and the other one with narrow fingers. These ZnO photodetectors exhibit attractive photovoltaic characteristics at 0 V bias. More interestingly, with increasing the asymmetric ratio (the width of wide fingers : the width of narrow fingers) of the interdigitated electrodes, the responsivity of the ZnO self-powered UV photodetectors was enhanced obviously, reaching as high as 20 mA W-1 when the asymmetric ratio was 20 : 1. A physical model based on band energy theory was developed to illustrate the origin of the photoresponse at 0 V in our device. Our findings provide a new route to realizing self-powered photodetectors.
机译:我们展示了一种基于不对称金属-半导体-金属(MSM)结构的新型ZnO自供电光电探测器:一个具有交叉指的Au交叉电极,另一个具有狭窄指的电极。这些ZnO光电探测器在0 V偏压下展现出诱人的光伏特性。更有趣的是,随着叉指电极的不对称比(宽手指的宽度:窄手指的宽度)的增加,ZnO自供电式紫外线光电探测器的响应度明显提高,当达到20 mA W-1时,其响应度最高。不对称比为20:1。开发了一个基于带能理论的物理模型来说明我们设备中0 V时光响应的起源。我们的发现为实现自供电光电探测器提供了一条新途径。

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