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通过气相沉积法制备具有双界面修饰钙钛矿的高效全无机红色钙钛矿发光二极管。

Efficient all-inorganic red perovskite light-emitting diodes with dual-interface-modified perovskites by vapor deposition.

作者信息

Guo Shuang, Liu He-Fu, Liu Yue-Feng

出版信息

Opt Lett. 2022 Jun 1;47(11):2694-2697. doi: 10.1364/OL.458832.

DOI:10.1364/OL.458832
PMID:35648907
Abstract

Interface engineering has been extensively used in perovskite light-emitting diodes (PeLEDs), which proves to be an effective and intelligent approach for surface defect passivation. However, the existing passivation strategy is restricted to the solution process, which results in poor compatibility with vapor-deposited PeLEDs and moderate controllability. Here, we propose a dual-interface modification strategy to facilitate the performance improvement of vapor-deposited all-inorganic red PeLEDs. An ultrathin phenylethanamine bromide (PEABr) layer is introduced to both the upper and lower interfaces of the vapor-deposited perovskite emission layer by vapor deposition. The vapor deposition of the PEABr with fine-controlled film thickness is a reliable and simple process and compatible with vapor-deposited all-inorganic PeLEDs. The dual-interface modification plays an observable role in manipulating the crystallization and surface morphology of the CsPbBrI film, which is of significance for the improvement of the PeLEDs' performance. As a result, the red PeLEDs achieve a maximum luminance and external quantum efficiency of 2338 cd/m and 1.75%, corresponding to enhancements of 2.75 and 5.25 times compared with those of PeLEDs without PEABr. This approach paves the way to high-efficiency all-evaporated all-inorganic PeLEDs.

摘要

界面工程已广泛应用于钙钛矿发光二极管(PeLED)中,这被证明是一种有效且智能的表面缺陷钝化方法。然而,现有的钝化策略仅限于溶液法,这导致与气相沉积的PeLED兼容性差且可控性一般。在此,我们提出一种双界面修饰策略,以促进气相沉积的全无机红色PeLED的性能提升。通过气相沉积在气相沉积的钙钛矿发光层的上下界面均引入一层超薄的苯乙胺溴化物(PEABr)。具有精确控制膜厚的PEABr气相沉积是一个可靠且简单的过程,并且与气相沉积的全无机PeLED兼容。双界面修饰在调控CsPbBrI薄膜的结晶和表面形貌方面发挥了显著作用,这对提升PeLED的性能具有重要意义。结果,红色PeLED实现了2338 cd/m的最大亮度和1.75%的外量子效率,与未使用PEABr的PeLED相比,分别提高了2.75倍和5.25倍。这种方法为高效全蒸发全无机PeLED铺平了道路。

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