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摘要:
Here, an engineered tunneling layer enhanced photocurrent multiplication through the impact ionization effect was proposed and experimentally demonstrated on the graphene/silicon heterojunction photodetectors. With considering the suitable band structure of the insulation material and their special defect states, an atomic layer deposition (ALD) prepared wide-bandgap insulating (WBI) layer of AlN was introduced into the interface of graphene/silicon heterojunction. The promoted tunneling process from this designed structure demonstrated that can effectively help the impact ionization with photogain not only for the regular minority carriers from silicon, but also for the novel hot carries from graphene. As a result, significantly enhanced photocurrent as well as simultaneously decreased dark current about one order were accomplished in this graphene/insulation/silicon (GIS) heterojunction devices with the optimized AlN thickness of~15 nm compared to the conventional graphene/silicon (GS) devices. Specifically, at the reverse bias of?10 V, a 3.96-A W?1 responsivity with the photogain of~5.8 for the peak response under 850-nm light illumination, and a 1.03-A W?1 responsivity with~3.5 photogain under the 365 nm ultraviolet (UV) illumination were realized, which are even remarkably higher than those in GIS devices with either Al2O3 or the commonly employed SiO2 insulation layers. This work demonstrates a universal strategy to fabricate broadband, low-cost and high-performance photo-detecting devices towards the graphene-silicon optoelectronic integration.
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篇名 Engineered tunneling layer with enhanced impact ionization for detection improvement in graphene/silicon heterojunction photodetectors
来源期刊 光:科学与应用(英文版) 学科
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年,卷(期) 2021,(6) 所属期刊栏目 Articles
研究方向 页码范围 1133-1142
页数 10页 分类号
字数 语种 英文
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光:科学与应用(英文版)
双月刊
2095-5545
22-1404/O4
吉林省长春市东南湖大路3888号
eng
出版文献量(篇)
762
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0
总被引数(次)
112
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