High-efficiency perovskite–polymer bulk heterostructure light-emitting diodes

被引:4
|
作者
Baodan Zhao
Sai Bai
Vincent Kim
Robin Lamboll
Ravichandran Shivanna
Florian Auras
Johannes M. Richter
Le Yang
Linjie Dai
Mejd Alsari
Xiao-Jian She
Lusheng Liang
Jiangbin Zhang
Samuele Lilliu
Peng Gao
Henry J. Snaith
Jianpu Wang
Neil C. Greenham
Richard H. Friend
Dawei Di
机构
[1] University of Cambridge,Cavendish Laboratory
[2] University of Oxford,Department of Physics
[3] Clarendon Laboratory,Department of Physics, Chemistry and Biology (IFM)
[4] Linköping University,Institute of Materials Research and Engineering (IMRE)
[5] Agency for Science,Laboratory of Advanced Functional Materials
[6] Technology and Research (A*STAR) ,Department of Physics and Astronomy
[7] Xiamen Institute of Rare Earth Materials,Institute of Advanced Materials (IAM)
[8] Haixi Institute,undefined
[9] Chinese Academy of Sciences,undefined
[10] University of Sheffield,undefined
[11] The UAE Centre for Crystallography,undefined
[12] Nanjing Tech University,undefined
来源
Nature Photonics | 2018年 / 12卷
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摘要
Perovskite-based optoelectronic devices are gaining much attention owing to their remarkable performance and low processing cost, particularly for solar cells. However, for perovskite light-emitting diodes, non-radiative charge recombination has limited the electroluminescence efficiency. Here we demonstrate perovskite–polymer bulk heterostructure light-emitting diodes exhibiting external quantum efficiencies of up to 20.1% (at current densities of 0.1–1 mA cm−2). The light-emitting diode emissive layer comprises quasi-two-dimensional and three-dimensional (2D/3D) perovskites and an insulating polymer. Photogenerated excitations migrate from quasi-2D to lower-energy sites within 1 ps, followed by radiative bimolecular recombination in the 3D regions. From near-unity external photoluminescence quantum efficiencies and transient kinetics of the emissive layer with and without charge-transport contacts, we find non-radiative recombination pathways to be effectively eliminated, consistent with optical models giving near 100% internal quantum efficiencies. Although the device brightness and stability (T50 = 46 h in air at peak external quantum efficiency) require further improvement, our results indicate the significant potential of perovskite-based photon sources.
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页码:783 / 789
页数:6
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