中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Back-to-back asymmetric Schottky-type self-powered UV photodetector based on ternary alloy MgZnO

文献类型:期刊论文

作者H.Y.Chen; X.Y.Sun; D.S.Yao; X.H.Xie; F.C.C.Ling; S.C.Su
刊名Journal of Physics D-Applied Physics
出版日期2019
卷号52期号:50页码:6
关键词MgZnO,UV PD,self-powered,asymmetric electrodes,ultraviolet photodetector,high responsivity,Physics
ISSN号0022-3727
DOI10.1088/1361-6463/ab452e
英文摘要A back-to-back asymmetric Schottky self-powered UV photodetector (PD) with fast speed was realized by a facile combination of ternary alloy MgZnO film and asymmetric Au electrodes. The high-crystalline-quality MgZnO films were synthesized by metal organic chemical vapor deposition. Due to the incorporation of Mg, the band gap of MgZnO film was confirmed to be 3.76 eV. In addition, owing to the large Schottky barrier difference between the active layer and the two asymmetric Au electrodes, the responsivity of the device could reach up to 2.22 mA W-1 at the optical wavelength of 330 nm without any power supply, and with a sharp cutoff at the wavelength of 343 nm. The device exhibits a very low dark current of 247 pA at -5 V. More interestingly, the decay time of our device is only around 92 mu s, which is much quicker than any other previously reported UV PDs even with bias voltage applied. Our findings provide a promising approach to realize a high-performance self-powered UV PD.
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语种英语
源URL[http://ir.ciomp.ac.cn/handle/181722/63459]  
专题中国科学院长春光学精密机械与物理研究所
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H.Y.Chen,X.Y.Sun,D.S.Yao,et al. Back-to-back asymmetric Schottky-type self-powered UV photodetector based on ternary alloy MgZnO[J]. Journal of Physics D-Applied Physics,2019,52(50):6.
APA H.Y.Chen,X.Y.Sun,D.S.Yao,X.H.Xie,F.C.C.Ling,&S.C.Su.(2019).Back-to-back asymmetric Schottky-type self-powered UV photodetector based on ternary alloy MgZnO.Journal of Physics D-Applied Physics,52(50),6.
MLA H.Y.Chen,et al."Back-to-back asymmetric Schottky-type self-powered UV photodetector based on ternary alloy MgZnO".Journal of Physics D-Applied Physics 52.50(2019):6.

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来源:长春光学精密机械与物理研究所

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