Defect Passivation on Lead-Free CsSnI3 Perovskite Nanowires Enables High-Performance Photodetectors with Ultra-High Stability

被引:3
|
作者
Zheng Gao [1 ,2 ,3 ]
Hai Zhou [1 ]
Kailian Dong [2 ]
Chen Wang [2 ]
Jiayun Wei [3 ]
Zhe Li [2 ]
Jiashuai Li [2 ]
Yongjie Liu [2 ]
Jiang Zhao [3 ]
Guojia Fang [2 ]
机构
[1] International School of Microelectronics, Dongguan University of Technology
[2] Key Lab of Artifcial Micro-and Nano-Structures of Ministry of Education of China, School of Physics and Technology, Wuhan University
[3] Faculty of Physics and Electronic Science, Hubei University
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TB383.1 []; TN15 [光电器件、光电管];
学科分类号
070205 ; 0803 ; 080501 ; 1406 ;
摘要
In recent years,Pb-free CsSnI3perovskite materials with excellent photoelectric properties as well as low toxicity are attracting much attention in photoelectric devices.However,deep level defects in CsSnI3,such as high density of tin vacancies,structural deformation of SnI6-octahedra and oxidation of Sn2+states,are the major challenge to achieve high-performance CsSnI3-based photoelectric devices with good stability.In this work,defect passivation method is adopted to solve the above issues,and the ultra-stable and high-performance CsSnI3nanowires(NWs) photodetectors(PDs) are fabricated via incorporating 1-butyl-2,3-dimethylimidazolium chloride salt(BMIMC1) into perovskites.Through materials analysis and theoretical calculations,BMIM+ions can effectively passivate the Sn-related defects and reduce the dark current of CsSnI3NW PDs.To further reduce the dark current of the devices,the polymethyl methacrylate is introduced,and finally,the dual passivated CsSnI3NWPDs show ultra-high performance with an ultra-low dark current of 2 × 10-11A,a responsivity of up to 0.237 A W-1,a high detectivity of 1.18 × 1012Jones and a linear dynamic range of 180 dB.Furthermore,the unpackaged devices exhibit ultra-high stability in device performance after 60 days of storage in air(25 ℃,50% humidity),with the device performance remaining above 90%.
引用
收藏
页码:489 / 498
页数:10
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