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Energy-Efficient Hydrogenated Zinc Oxide Nanoflakes for High-Performance Self-Powered Ultraviolet Photodetector

机译:用于高性能自供电紫外光电探测器的节能型氢化氧化锌纳米薄片

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摘要

Light absorption efficiency and doping induced charge carrier density play a vital role in self-powered optoelectronic devices. Unique vanadium-doped zinc oxide nanoflake array (VZnO NFs) is fabricated for self-powered ultraviolet (UV) photodetection. The light harvesting efficiency drastically improved from 84% in ZnO NRs to 98% in VZnO NFs. Moreover, the hydrogenation of as-synthesized VZnO (H:VZnO) NFs displayed an outstanding increase in response current as compared to pristine structures. The H:VZnO NFs device presents an extraordinary photoelastic behavior with faster photodetection speed in the order of ms under a low UV illumination signal. Excellent responsivity and external quantum efficiency with larger value of specific detectivity of H:VZnO NFs device promises an outstanding sensitivity for UV signal and self-powered high-performance visible-blind photodetector.
机译:光吸收效率和掺杂引起的电荷载流子密度在自供电光电子设备中起着至关重要的作用。独特的钒掺杂氧化锌纳米片阵列(VZnO NFs)用于自供电紫外线(UV)光电检测。光收集效率从ZnO NR中的84%大幅提高到VZnO NF中的98%。此外,与原始结构相比,合成后的VZnO(H:VZnO)NFs的氢化反应电流显着增加。 H:VZnO NFs器件在低UV照明信号下具有非凡的光弹性行为,光检测速度更快,达到ms量级。 H:VZnO NFs器件具有出色的响应度和外部量子效率,并具有更大的比检测率值,可确保对UV信号和自供电高性能可见盲光电探测器具有出色的灵敏度。

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