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Few-layer graphene/ZnO nanowires based high performance UV photodetector

机译:基于几层石墨烯/ ZnO纳米线的高性能紫外光电探测器

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摘要

A graphene and zinc oxide nanowires (G/ZnO NWs) based ultraviolet (UV) photodetector presents excellent responsivity and photocurrent gain with detectivity. Graphene due to higher charge carrier transport mobility induces faster response to UV illumination at the interface between ZnO and graphene with improved response and decay times as compared to a ZnO NWs device alone. A linear increase is revealed for both the responsivity and photocurrent gain of the G/ZnO NWs device with the applied bias. These results suggest that the G/ZnO NWs device exhibits great promise for highly efficient UV photodetectors.
机译:基于石墨烯和氧化锌纳米线(G / ZnO NWs)的紫外线(UV)光电探测器具有出色的响应度和具有检测能力的光电流增益。与单独的ZnO NWs器件相比,由于较高的载流子迁移率,石墨烯在ZnO和石墨烯之间的界面上诱导了对UV照明的更快响应,并具有改进的响应和衰减时间。在施加偏压的情况下,G / ZnO NWs器件的响应度和光电流增益均呈线性增加。这些结果表明,G / ZnO NWs器件对高效紫外光电探测器具有广阔的前景。

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