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Active pixel image sensor array for dual vision using large-area bilayer WS_(2) 被引量:1

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摘要 Transition metal dichalcogenides(TMDs)are a promising candidate for developing advanced sensors,particularly for day and night vision systems in vehicles,drones,and security surveillance.While traditional systems rely on separate sensors for different lighting conditions,TMDs can absorb light across a broad-spectrum range.In this study,a dual vision active pixel image sensor array based on bilayer WS2 phototransistors was implemented.The bilayer WS2 film was synthesized using a combined process of radio-frequency sputtering and chemical vapor deposition.The WS2-based thin-film transistors(TFTs)exhibit high average mobility,excellent Ion/Ioff,and uniform electrical properties.The optoelectronic properties of the TFTs array exhibited consistent behavior and can detect visible to near-infrared light with the highest responsivity of 1821 A W1(at a wavelength of 405 nm)owing to the photogating effect.Finally,red,green,blue,and near-infrared image sensing capabilities of active pixel image sensor array utilizing light stencil projection were demonstrated.The proposed image sensor array utilizing WS2 phototransistors has the potential to revolutionize the field of vision sensing,which could lead to a range of new opportunities in various applications,including night vision,pedestrian detection,various surveillance,and security systems.
出处 《InfoMat》 SCIE CSCD 2024年第4期68-82,共15页 信息材料(英文)
基金 supported in part by the National Research Foundation of Korea(2022M3D1A2083618,2021M3H4A1A02056037,2022H1D3A2A01096362,RS-2023-00237585,RS-2023-00237308) supported in part by Ontario's Ministry of Research,Innovation,and Science through Early Researcher Awards(ER17-13-205) also in part by NSERC Discovery Grant(RGPIN-2020-04070) M.S.is supported in part by the NSERC Canada Graduate Scholarship-Master's(CGS-M)program and the WIN Nanofellowship.
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  • 1Hao QIU,Zhihao YU,Tiange ZHAO,Qi ZHANG,Mingsheng XU,Peifeng LI,Taotao LI,Wenzhong BAO,Yang CHAI,Shula CHEN,Yiqi CHEN,Hui-Ming CHENG,Daoxin DAI,Zengfeng DI,Zhuo DONG,Xidong DUAN,Yuhan FENG,Yu FU,Jingshu GUO,Pengwen GUO,Yue HAO,Jun HE,Xiao HE,Jingyi HU,Weida HU,Zehua HU,Xinyue HUANG,Ziyang HUANG,Ali IMRAN,Ziqiang KONG,Jia LI,Qian LI,Weisheng LI,Lei LIAO,Bilu LIU,Can LIU,Chunsen LIU,Guanyu LIU,Kaihui LIU,Liwei LIU,Sheng LIU,Yuan LIU,Donglin LU,Likuan MA,Feng MIAO,Zhenhua NI,Jing NING,Anlian PAN,Tian-Ling REN,Haowen SHU,Litao SUN,Yue SUN,Quanyang TAO,Zi-Ao TIAN,Dong WANG,Hao WANG,Haomin WANG,Jialong WANG,Junyong WANG,Wenhui WANG,Xingjun WANG,Yeliang WANG,Yuwei WANG,Zhenyu WANG,Yao WEN,Haidi WU,Hongzhao WU,Jiangbin WU,Yanqing WU,Longfei XIA,Baixu XIANG,Luwen XING,Qihua XIONG,Xiong XIONG,Jeffrey XU,Tao XU,Yang XU,Liu YANG,Yi YANG,Yuekun YANG,Lei YE,Yu YE,Bin YU,Ting YU,Hui ZENG,Guangyu ZHANG,Hongyun ZHANG,Jincheng ZHANG,Kai ZHANG,Tao ZHANG,Xinbo ZHANG,Yanfeng ZHANG,Chunsong ZHAO,Yuda ZHAO,Ting ZHENG,Peng ZHOU,Shuyun ZHOU,Yuxuan ZHU,Deren YANG,Yi SHI,Han WANG,Xinran WANG.Two-dimensional materials for future information technology:status and prospects[J].Science China(Information Sciences),2024,67(6):1-147. 被引量:1

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