Spectra stable blue perovskite light-emitting diodes

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作者
Yuanzhi Jiang
Chaochao Qin
Minghuan Cui
Tingwei He
Kaikai Liu
Yanmin Huang
Menghui Luo
Li Zhang
Hongyu Xu
Saisai Li
Junli Wei
Zhiyong Liu
Huanhua Wang
Gi-Hwan Kim
Mingjian Yuan
Jun Chen
机构
[1] Nankai University,Key Laboratory of Advanced Energy Materials Chemistry (Ministry of Education), College of Chemistry
[2] Henan Normal University,College of Physics and Materials Science
[3] Chinese Academy of Science,Institute of High Energy Physics
[4] Korea Photonics Technology Institute,Photonic Energy Research Center
[5] Nankai University,Renewable Energy Conversion and Storage Center (RECAST)
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摘要
Device performance and in particular device stability for blue perovskite light-emitting diodes (PeLEDs) remain considerable challenges for the whole community. In this manuscript, we conceive an approach by tuning the ‘A-site’ cation composition of perovskites to develop blue-emitters. We herein report a Rubidium-Cesium alloyed, quasi-two-dimensional perovskite and demonstrate its great potential for pure-blue PeLED applications. Composition engineering and in-situ passivation are conducted to further improve the material’s emission property and stabilities. Consequently, we get a prominent film photoluminescence quantum yield of around 82% under low excitation density. Encouraged by these findings, we finally achieve a spectra-stable blue PeLED with the peak external quantum efficiency of 1.35% and a half-lifetime of 14.5 min, representing the most efficient and stable pure-blue PeLEDs reported so far. The strategy is also demonstrated to be able to generate efficient perovskite blue emitters and PeLEDs in the whole blue spectral region (from 454 to 492 nm).
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