Chen Ziming, Li Zhenchao, Hopper Thomas R, Bakulin Artem A, Yip Hin-Lap
State Key Laboratory of Luminescent Materials and Devices, Institute of Polymer Optoelectronic Materials and Devices, School of Materials Science and Engineering, South China University of Technology, 381 Wushan Road, Guangzhou 510640, People's Republic of China.
School of Environment and Energy, South China University of Technology, Guangzhou University City, Panyu District, Guangzhou 510006, People's Republic of China.
Rep Prog Phys. 2021 Apr 12;84(4). doi: 10.1088/1361-6633/abefba.
Here we provide a comprehensive review of a newly developed lighting technology based on metal halide perovskites (i.e. perovskite light-emitting diodes) encompassing the research endeavours into materials, photophysics and device engineering. At the outset we survey the basic perovskite structures and their various dimensions (namely three-, two- and zero-dimensional perovskites), and demonstrate how the compositional engineering of these structures affects the perovskite light-emitting properties. Next, we turn to the physics underpinning photo- and electroluminescence in these materials through their connection to the fundamental excited states, energy/charge transport processes and radiative and non-radiative decay mechanisms. In the remainder of the review, we focus on the engineering of perovskite light-emitting diodes, including the history of their development as well as an extensive analysis of contemporary strategies for boosting device performance. Key concepts include balancing the electron/hole injection, suppression of parasitic carrier losses, improvement of the photoluminescence quantum yield and enhancement of the light extraction. Overall, this review reflects the current paradigm for perovskite lighting, and is intended to serve as a foundation to materials and device scientists newly working in this field.
在此,我们对一种基于金属卤化物钙钛矿(即钙钛矿发光二极管)的新开发照明技术进行全面综述,内容涵盖材料、光物理和器件工程等方面的研究工作。首先,我们考察基本的钙钛矿结构及其各种维度(即三维、二维和零维钙钛矿),并展示这些结构的组成工程如何影响钙钛矿的发光特性。接下来,我们通过将这些材料中的光致发光和电致发光与基本激发态、能量/电荷传输过程以及辐射和非辐射衰减机制联系起来,探讨其背后的物理原理。在综述的其余部分,我们专注于钙钛矿发光二极管的工程设计,包括其发展历程以及对提高器件性能的当代策略的广泛分析。关键概念包括平衡电子/空穴注入、抑制寄生载流子损失、提高光致发光量子产率以及增强光提取。总体而言,本综述反映了当前钙钛矿照明的范式,旨在为新进入该领域的材料和器件科学家提供基础。