首页> 外文会议>International Conference on Solid-State Sensors, Actuators and Microsystems & Eurosensors XXXIII >A Self-Powered UV Photodetector Using Face-To-Face Zinc Oxide Nanorod Arrays
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A Self-Powered UV Photodetector Using Face-To-Face Zinc Oxide Nanorod Arrays

机译:使用面对面的氧化锌纳米棒阵列的自供电紫外线光电探测器

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We report a self-powered ultraviolet (UV) photo- detector (PD) utilizing two sets of free-standing ZnO nanorod arrays (ZNRAs) to assemble as a face-to-face nanohybrid structure. In comparison with the PDs based on single-side ZNRAs, the face-to-face ZNRAs based PD exhibits '1+1>2'enhancements in photoelectric conversion. The ZNRAs were prepared on ITO/glass and Ti foil using a facile hydrothermal method. The face-to-face ZNRAs device operates with the Schottky junctions in ITO/ZnO interface, ohmic contact in Ti/ZnO interface, and the effective NR-NR contacts in neighboring ZNRs as a transport network of carriers. Thanks to the Schottky and NR-NR junction barriers, the electron-hole pairs are effectively separated. The device exhibits a self-powered current density of 5.52 μA•cm
机译:我们报告了利用两套独立式ZnO纳米棒阵列(ZNRAs)组装成面对面的纳米杂化结构的自供电式紫外线(UV)光电探测器(PD)。与基于单面ZNRA的PD相比,基于面对ZNRA的PD在光电转换方面表现出“ 1 + 1> 2”的增强。使用简便的水热法在ITO /玻璃和Ti箔上制备ZNRAs。面对面的ZNRAs器件以ITO / ZnO界面中的肖特基结,Ti / ZnO界面中的欧姆接触以及相邻ZNR中的有效NR-NR接触作为载流子的传输网络。得益于肖特基和NR-NR结势垒,电子-空穴对得以有效分离。该器件的自供电电流密度为5.52μA•cm

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