高效深蓝色钙钛矿发光二极管的氯化物蒸气退火

IF 4.6 2区 化学 Q2 CHEMISTRY, PHYSICAL
Shuang Xu, Dingding Tian, Xiaopeng Liang, Ruishan Wang, Wei Zhu, Shi Hu, Kuankuan Xiong, Zirong Fang, Lin Zhu, Nana Wang* and Jianpu Wang*, 
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引用次数: 0

摘要

实现深蓝发射对于钙钛矿发光二极管(led)在显示器中的实际应用至关重要。提高钙钛矿中氯与溴的比例是实现深蓝色发射的一种简便方法。然而,氯在钙钛矿前驱体溶液中的低溶解度和缺陷的低形成能是限制器件效率的挑战。在这里,我们展示了一种氯化物蒸汽退火方法,利用乙基氯化铵(EAC)来实现原位卤化物交换和缺陷钝化。我们发现EAC中的氯离子可以有效地与钙钛矿中的溴离子交换,导致蓝移发射。此外,EAC中的铵基可以与不饱和铅配合,减少陷阱辅助的非辐射复合。基于这种方法,我们实现了高效的深蓝钙钛矿led,其峰值外量子效率为6.8%,色坐标为(0.131,0.044),完全符合Rec. 2020蓝色标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Chloride Vapor Annealing for Efficient Deep-Blue Perovskite Light-Emitting Diodes

Chloride Vapor Annealing for Efficient Deep-Blue Perovskite Light-Emitting Diodes

Achieving deep-blue emission is crucial for the practical application of perovskite light-emitting diodes (LEDs) in displays. Increasing the ratio of chlorine to bromine in the perovskite is a facile method to achieve deep-blue emission. However, the low solubility of chloride in the perovskite precursor solution and the low formation energy of defects present challenges that limit device efficiency. Here, we demonstrate a chloride vapor annealing method utilizing ethylammonium chloride (EAC) to enable in situ halide exchange and defect passivation. We find that the chloride ions from EAC can effectively exchange with the bromide ions in the perovskite, resulting in blue-shifted emission. Additionally, the ammonium group in EAC can coordinate with unsaturated lead, reducing trap-assisted nonradiative recombination. Based on this approach, we achieve efficient deep-blue perovskite LEDs with a peak external quantum efficiency of 6.8% and color coordinates of (0.131, 0.044), which fully meet the Rec. 2020 blue standard.

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来源期刊
The Journal of Physical Chemistry Letters
The Journal of Physical Chemistry Letters CHEMISTRY, PHYSICAL-NANOSCIENCE & NANOTECHNOLOGY
CiteScore
9.60
自引率
7.00%
发文量
1519
审稿时长
1.6 months
期刊介绍: The Journal of Physical Chemistry (JPC) Letters is devoted to reporting new and original experimental and theoretical basic research of interest to physical chemists, biophysical chemists, chemical physicists, physicists, material scientists, and engineers. An important criterion for acceptance is that the paper reports a significant scientific advance and/or physical insight such that rapid publication is essential. Two issues of JPC Letters are published each month.
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