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双坐标热活化延迟荧光硬币金属配合物:分子设计、光物理特性及器件应用

Two-Coordinate Thermally Activated Delayed Fluorescence Coinage Metal Complexes: Molecular Design, Photophysical Characters, and Device Application.

作者信息

Li Tian-Yi, Zheng Shu-Jia, Djurovich Peter I, Thompson Mark E

机构信息

Department of Chemistry, University of Science and Technology Beijing, Beijing 100083, China.

Department of Chemistry, University of Southern California, Los Angeles, California 90089, United States.

出版信息

Chem Rev. 2024 Apr 10;124(7):4332-4392. doi: 10.1021/acs.chemrev.3c00761. Epub 2024 Mar 28.

Abstract

Since the emergence of the first green light emission from a fluorescent thin-film organic light emitting diode (OLED) in the mid-1980s, a global consumer market for OLED displays has flourished over the past few decades. This growth can primarily be attributed to the development of noble metal phosphorescent emitters that facilitated remarkable gains in electrical conversion efficiency, a broadened color gamut, and vibrant image quality for OLED displays. Despite these achievements, the limited abundance of noble metals in the Earth's crust has spurred ongoing efforts to discover cost-effective electroluminescent materials. One particularly promising avenue is the exploration of thermally activated delayed fluorescence (TADF), a mechanism with the potential to fully harness excitons in OLEDs. Recently, investigations have unveiled TADF in a series of two-coordinate coinage metal (Cu, Ag, and Au) complexes. These organometallic TADF materials exhibit distinctive behavior in comparison to their organic counterparts. They offer benefits such as tunable emissive colors, short TADF emission lifetimes, high luminescent quantum yields, and reasonable stability. Impressively, both vacuum-deposited and solution-processed OLEDs incorporating these materials have achieved outstanding performance. This review encompasses various facets on two-coordinate TADF coinage metal complexes, including molecular design, photophysical characterizations, elucidation of structure-property relationships, and OLED applications.

摘要

自20世纪80年代中期荧光薄膜有机发光二极管(OLED)首次发出绿光以来,在过去几十年里,全球OLED显示屏消费市场蓬勃发展。这种增长主要归功于贵金属磷光发射体的发展,它使OLED显示屏在电转换效率、色域拓宽和图像质量鲜艳度方面取得了显著提升。尽管取得了这些成就,但地壳中贵金属储量有限,这促使人们不断努力寻找具有成本效益的电致发光材料。一个特别有前景的途径是探索热激活延迟荧光(TADF),这是一种有可能在OLED中充分利用激子的机制。最近,研究发现一系列二配位货币金属(铜、银和金)配合物中存在TADF。与有机TADF材料相比,这些有机金属TADF材料表现出独特的行为。它们具有诸如可调节发光颜色、TADF发射寿命短、高发光量子产率和合理稳定性等优点。令人印象深刻的是,采用这些材料的真空沉积和溶液处理OLED均取得了优异的性能。本综述涵盖了二配位TADF货币金属配合物的各个方面,包括分子设计、光物理表征、结构-性能关系的阐明以及OLED应用。

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