High brightness formamidinium lead bromide perovskite nanocrystal light emitting devices

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作者
Ajay Perumal
Sushant Shendre
Mingjie Li
Yong Kang Eugene Tay
Vijay Kumar Sharma
Shi Chen
Zhanhua Wei
Qing Liu
Yuan Gao
Pio John S. Buenconsejo
Swee Tiam Tan
Chee Lip Gan
Qihua Xiong
Tze Chien Sum
Hilmi Volkan Demir
机构
[1] LUMINOUS! Center of Excellence for Semiconductor Lighting and Displays,Division of Physics and Applied Physics
[2] School of Electrical and Electronic Engineering,Department of Electrical and Electronics Engineering, Department of Physics
[3] Nanyang Technological University,undefined
[4] School of Physical and Mathematical Sciences,undefined
[5] Nanyang Technological University,undefined
[6] UNAM-Institute of Materials Science and Nanotechnology,undefined
[7] Bilkent University,undefined
[8] School of Materials Science and Engineering,undefined
[9] Nanyang Technological University,undefined
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摘要
Formamidinium lead halide (FAPbX3) has attracted greater attention and is more prominent recently in photovoltaic devices due to its broad absorption and higher thermal stability in comparison to more popular methylammonium lead halide MAPbX3. Herein, a simple and highly reproducible room temperature synthesis of device grade high quality formamidinium lead bromide CH(NH2)2PbBr3 (FAPbBr3) colloidal nanocrystals (NC) having high photoluminescence quantum efficiency (PLQE) of 55–65% is reported. In addition, we demonstrate high brightness perovskite light emitting device (Pe-LED) with these FAPbBr3 perovskite NC thin film using 2,2′,2″-(1,3,5-Benzinetriyl)-tris(1-phenyl-1-H-benzimidazole) commonly known as TPBi and 4,6-Bis(3,5-di(pyridin-3-yl)phenyl)-2-methylpyrimidine (B3PYMPM) as electron transport layers (ETL). The Pe-LED device with B3PYMPM as ETL has bright electroluminescence of up to 2714 cd/m2, while the Pe-LED device with TPBi as ETL has higher peak luminous efficiency of 6.4 cd/A and peak luminous power efficiency of 5.7 lm/W. To our knowledge this is the first report on high brightness light emitting device based on CH(NH2)2PbBr3 widely known as FAPbBr3 nanocrystals in literature.
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