首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Piezophototronic Effect Enhanced Self-powered UV/Visible Photodetector Based on Type-II ZnO/ZnSe Core/Shell Heterojunction
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APS -APS March Meeting 2017 - Event - Piezophototronic Effect Enhanced Self-powered UV/Visible Photodetector Based on Type-II ZnO/ZnSe Core/Shell Heterojunction

机译:APS -APS 2017年3月会议-活动-基于II型ZnO / ZnSe核/壳异质结的压电光电效应增强型自供电UV /可见光探测器

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Piezophototronic effect, coupling of piezoelectric and optical properties in semiconductor materials, has attracted much interest recently because of its capabilities of improving device performance significantly. In this paper, we report a Piezophototronic effect enhanced self-powered broadband UV/visible photodetector based on ZnO/ZnSe core/shell nanowire array. The integrated photodetector based on the ZnO/ZnSe core/shell structure is capable of detecting the whole band range of the visible spectrum as well as UV light, and it is further boosted through applying compressive load under different wavelength excitation sources by three orders of magnitude in the relative responsivity. The significant improved performance is believed to stem from piezophototronic effect and its abrupt interface between ZnSe and ZnO. Furthermore, the device exhibits good self-powered photodetection performance under UV/visible light illumination. This work is expected to generate broad interest in exploring the application using type II heterostructure for broadband UV/visible photodetection under both powered and self-powered conditions.
机译:压电效应,即半导体材料中压电和光学特性的耦合,由于其能够显着提高器件性能的能力而引起了人们的极大兴趣。在本文中,我们报告了基于ZnO / ZnSe核/壳纳米线阵列的压电效应增强型自供电宽带紫外/可见光探测器。基于ZnO / ZnSe核/壳结构的集成光电探测器能够检测可见光谱和紫外光的整个波段范围,并且通过在不同波长激发源上施加三个三个数量级的压缩负载而得到进一步增强在相对的响应度。据信,显着改善的性能归因于压电效应及其在ZnSe和ZnO之间的突然界面。此外,该器件在紫外/可见光照明下表现出良好的自供电光检测性能。预期这项工作将引起人们广泛的兴趣,探索在带电和自带电条件下使用II型异质结构进行宽带UV /可见光检测的应用。

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