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石墨烯量子点/氧化锌纳米线复合提高紫外光传感性能

樊宇 Fan Yu元倩倩 Yuan Qianqian蒋海涛 Jiang Haitao刘诗斌 Liu Shibin

2021Infrared and Laser EngineeringMaterials Science被引 1

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摘要

The photocurrent of traditional ZnO ultraviolet detector is low. Due to the high carrier mobility of graphene, the idea of employing Graphene Quantum Dots as photosensitizers of electron transporting medium was proposed. The phenomenal performance of ZnO-GQD composites was attributed to the efficient immobilization of GQDs on ZnO nanowires via an inexpensive spin-coating method. A simple spinning annealing method was used to make graphene QDS compound on the surface of ZnO nanowires. After the surface of ZnO nanowires being modified by graphene quantum dots, the photocurrent of the ZnO photodetector was increased from 9.5 μA to 65 μA under the condition of 5 V bias voltage and UV irradiation with wavelength of 365 nm and power of 1.35 mW /cm2. The photocurrent was increased by 6.8 times. This simple spinning annealing method reduces the processing technology of UV photodetector and improves the performance of the photodetector, which will provide a beneficial reference for the next generation of sustainable green development strategy and the design of high efficiency and low cost photoelectric equipment.

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樊宇 Fan Yu, 元倩倩 Yuan Qianqian, 蒋海涛 Jiang Haitao, 等. 石墨烯量子点/氧化锌纳米线复合提高紫外光传感性能[J]. Infrared and Laser Engineering, 2021.

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DOI:https://doi.org/10.3788/irla20200447

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