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用于高效稳定发光二极管的卤化铅钙钛矿纳米晶体的改性策略

Modification strategies of lead halide perovskite nanocrystals for efficient and stable LEDs.

作者信息

Rahman Sami Ur, Song Yong-Hui, Yao Hong-Bin

机构信息

Hefei National Research Centre for Physical Sciences at the Microscale, University of Science and Technology of China, Hefei, Anhui 230026, China.

Department of Applied Chemistry, University of Science and Technology of China, Hefei, Anhui 230026, China.

出版信息

Chem Commun (Camb). 2024 Jul 4;60(55):6988-6998. doi: 10.1039/d4cc02072c.

Abstract

Lead halide perovskite nanocrystals (PNCs) hold immense promise in high-performance light-emitting diodes (LEDs) for future high-definition displays. Their adjustable bandgaps, vivid colors, and good carrier mobility are key factors that make them a potential game-changer. However, to fully harness their potential, the efficiency and long-term stability of PNCs-based light-emitting diodes (PNC-LEDs) must be enhanced. Recent material research results have shed light on the leading cause of performance decline in PNC-LEDs, which is ionic migration linked to surface defects and grain boundary imperfections. This review aims to present recent advancements in the modification strategies of PNCs, focusing on obtaining high-quality PNCs for LEDs. The PNC modification strategies are first summarized, including crystal structure regulation, nanocrystal size tuning, ligand exchange, and surface passivation. Then, the effects of these material design aspects on LED device performances, such as efficiency, brightness, and stability, are presented. Based on the efficient modification strategies, we propose promising material design insights for efficient and stable PNC-LEDs.

摘要

卤化铅钙钛矿纳米晶体(PNCs)在用于未来高清显示器的高性能发光二极管(LED)方面具有巨大潜力。它们可调节的带隙、鲜艳的颜色和良好的载流子迁移率是使其成为潜在变革者的关键因素。然而,为了充分发挥其潜力,必须提高基于PNCs的发光二极管(PNC-LEDs)的效率和长期稳定性。最近的材料研究结果揭示了PNC-LEDs性能下降的主要原因,即与表面缺陷和晶界缺陷相关的离子迁移。本综述旨在介绍PNCs改性策略的最新进展,重点是获得用于LED的高质量PNCs。首先总结了PNC改性策略,包括晶体结构调控、纳米晶体尺寸调节、配体交换和表面钝化。然后,介绍了这些材料设计方面对LED器件性能的影响,如效率、亮度和稳定性。基于有效的改性策略,我们提出了关于高效稳定的PNC-LEDs的有前景的材料设计见解。

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