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Buried interface modification and light outcoupling strategy for efficient blue perovskite light-emitting diodes.

Authors :
Wang, Shuxin
Yu, Zhiqiu
Qin, Jiajun
Chen, Guoyi
Liu, Yongjie
Fan, Shuaiwei
Ma, Chao
Yao, Fang
Cui, Hongsen
Zhou, Shun
Dong, Kailian
Lin, Qianqian
Tao, Chen
Gao, Feng
Ke, Weijun
Fang, Guojia
Source :
Science Bulletin. Jul2024, Vol. 69 Issue 14, p2231-2240. 10p.
Publication Year :
2024

Abstract

[Display omitted] Perovskite light-emitting diodes (PeLEDs) exhibit remarkable potential in the field of displays and solid-state lighting. However, blue PeLEDs, a key element for practical applications, still lag behind their green and red counterparts, due to a combination of strong nonradiative recombination losses and unoptimized device structures. In this report, we propose a buried interface modification strategy to address these challenges by focusing on the bottom-hole transport layer (HTL) of the PeLEDs. On the one hand, a multifunctional molecule, aminoacetic acid hydrochloride (AACl), is introduced to modify the HTL/perovskite interface to regulate the perovskite crystallization. Experimental investigations and theoretical calculations demonstrate that AACl can effectively reduce the nonradiative recombination losses in bulk perovskites by suppressing the growth of low- n perovskite phases and also the losses at the bottom interface by passivating interfacial defects. On the other hand, a self-assembly nanomesh structure is ingeniously developed within the HTLs. This nanomesh structure is meticulously crafted through the blending of poly-(9,9-dioctyl-fluorene-co-N-(4-butyl phenyl) diphenylamine) and poly (n-vinyl carbazole), significantly enhancing the light outcoupling efficiency in PeLEDs. As a result, our blue PeLEDs achieve remarkable external quantum efficiencies, 20.4% at 487 nm and 12.5% at 470 nm, which are among the highest reported values. Our results offer valuable insights and effective methods for achieving high-performance blue PeLEDs. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20959273
Volume :
69
Issue :
14
Database :
Academic Search Index
Journal :
Science Bulletin
Publication Type :
Academic Journal
Accession number :
178502633
Full Text :
https://doi.org/10.1016/j.scib.2024.05.028