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构建二维/三维异质结用于超纯蓝光钙钛矿发光二极管的自上而下剥离工艺

Top-Down Exfoliation Process Constructing 2D/3D Heterojunction toward Ultrapure Blue Perovskite Light-Emitting Diodes.

作者信息

Zhang Kai, Su Zhenhuang, Shen Yang, Cao Long-Xue, Zeng Xin-Yi, Feng Shi-Chi, Yu Yi, Gao Xingyu, Tang Jian-Xin, Li Yanqing

机构信息

Macao Institute of Materials Science and Engineering (MIMSE), Faculty of Innovation Engineering, Macau University of Science and Technology, Taipa 999078, Macao, People's Republic of China.

Shanghai Synchrotron Radiation Facility, Zhangjiang Laboratory, Chinese Academy of Sciences, Shanghai 200241, People's Republic ofChina.

出版信息

ACS Nano. 2024 Feb 6;18(5):4570-4578. doi: 10.1021/acsnano.3c12433. Epub 2024 Jan 26.

DOI:10.1021/acsnano.3c12433
PMID:38277481
Abstract

3D perovskites with low energy disorder and high ambipolar charge mobility represent a promising solution for efficient and bright light-emitting diodes. However, the challenges of regulating the nanocrystal size to trigger the quantum confinement effect and control the surface trap states to reduce charge loss hinder the applications of 3D perovskites in blue perovskite light-emitting diodes (PeLEDs). In this study, we present a top-down exfoliation method to obtain blue 3D perovskite films with clipped nanocrystals and tunable bandgaps by employing methyl cyanide (MeCN) for post-treatment. In this method, the MeCN solvent exfoliates the surface components of the 3D perovskite grains through a partial dissolution process. Moreover, the dissolved precursor can be further utilized to construct an ingenious 2D/3D heterostructure by incorporating an organic spacer into the MeCN solvent, contributing to efficient defect passivation and improved energy transfer. Consequently, efficient PeLEDs featuring ultrapure blue emission at 478 nm achieve a record external quantum efficiency of 12.3% among their 3D counterparts. This work emphasizes the significance of inducing the quantum confinement effect in 3D perovskites for efficient blue PeLEDs and provides a viable scheme for the in situ regulation of perovskite crystals.

摘要

具有低能量无序和高双极性电荷迁移率的3D钙钛矿是高效且明亮的发光二极管的一种有前景的解决方案。然而,调节纳米晶体尺寸以触发量子限制效应以及控制表面陷阱态以减少电荷损失的挑战阻碍了3D钙钛矿在蓝色钙钛矿发光二极管(PeLED)中的应用。在本研究中,我们提出了一种自上而下的剥离方法,通过使用乙腈(MeCN)进行后处理来获得具有剪裁纳米晶体和可调带隙的蓝色3D钙钛矿薄膜。在该方法中,MeCN溶剂通过部分溶解过程剥离3D钙钛矿晶粒的表面成分。此外,溶解的前驱体可以通过在MeCN溶剂中引入有机间隔层进一步用于构建巧妙的2D/3D异质结构,有助于有效的缺陷钝化和改善的能量转移。因此,在478nm处具有超纯蓝色发射的高效PeLED在其3D同类产品中实现了创纪录的12.3%的外量子效率。这项工作强调了在3D钙钛矿中诱导量子限制效应对于高效蓝色PeLED的重要性,并为钙钛矿晶体的原位调控提供了可行的方案。

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引用本文的文献

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Nondestructive halide exchange via S2-like mechanism for efficient blue perovskite light-emitting diodes.通过类似S2的机制进行无损卤化物交换以制备高效蓝色钙钛矿发光二极管。
Nat Commun. 2024 Dec 5;15(1):10621. doi: 10.1038/s41467-024-55074-4.
2
Optimizing Perovskite Surfaces to Enhance Post-Treatment for Efficient Blue Mixed-Halide Perovskite Light-emitting Diodes.优化钙钛矿表面以增强后处理,用于高效蓝色混合卤化物钙钛矿发光二极管。
Adv Mater. 2025 Jun;37(25):e2414788. doi: 10.1002/adma.202414788. Epub 2024 Dec 4.