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首页> 外文期刊>ACS applied materials & interfaces >High-Performance Fully Nanostructured Photodetector with Single-Crystalline CdS Nanotubes as Active Layer and Very Long Ag Nanowires as Transparent Electrodes
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High-Performance Fully Nanostructured Photodetector with Single-Crystalline CdS Nanotubes as Active Layer and Very Long Ag Nanowires as Transparent Electrodes

机译:高性能全纳米结构光电探测器,以单晶CdS纳米管为有源层,非常长的Ag纳米线为透明电极

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摘要

Long and single-crystalline CdS nanotubes (NTs) have been prepared via a physical evaporation process. A metal-semiconductor-metal full-nanostructured photodetector with CdS NTs as active layer and Ag nanowires (NWs) of low resistivity and high transmissivity as electrodes has been fabricated and characterized. The CdS NTs-based photodetectors exhibit high performance, such as lowest dark currents (0.19 nA) and high photoresponse ratio (I-light/I-dark approximate to 4016) (among CdS nanostructure network photodetectors and NTs netwok photodetectors reported so far) and very low operation voltages (0.5 V). The photoconduction mechanism, including the formation of a Schottky barrier at the interface of Ag NW and CdS NTs and the effect of oxygen adsorption process on the Schottky barrier has also been provided in detail based on the studies of CdS NTs photodetector in air and vacuum. Furthermore, CdS NTs photodetector exhibits an enhanced photosensitivity as compared with CdS NWs photodetector. The enhancement in performance is dependent on the larger surface area of NTs adsorbing more oxygen in air and the microcavity structure of NTs with higher light absorption efficiency and external quantum efficiency. It is believed that CdS NTs can potentially be useful in the designs of 1D CdS-based optoelectronic devices and solar cells.
机译:已经通过物理蒸发工艺制备了长且单晶的CdS纳米管(NTs)。以CdS NTs为有源层,以低电阻率和高透射率的Ag纳米线(NWs)为电极,制备并表征了金属-半导体-金属全纳米结构光探测器。基于CdS NTs的光电探测器表现出高性能,例如最低的暗电流(0.19 nA)和高的光响应比(I-light / I-dark大约为4016)(到目前为止已报道了CdS纳米结构网络光电探测器和NTs网络光电探测器)和极低的工作电压(0.5 V)。基于在空气和真空中对CdS NTs光电探测器的研究,还详细提供了光电导机理,包括在Ag NW和CdS NTs的界面处形成肖特基势垒,以及氧吸附过程对肖特基势垒的影响。此外,与CdS NWs光电探测器相比,CdS NTs光电探测器表现出增强的光敏性。性能的提高取决于NTs的表面积更大,在空气中吸附更多的氧气,以及NTs的微腔结构具有更高的光吸收效率和外部量子效率。人们相信,CdS NTs可能在基于一维CdS的光电器件和太阳能电池的设计中有用。

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