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螺二芴三聚体:用于高效蓝色磷光有机发光二极管的高三重态纯烃主体材料。

Spirobifluorene Trimers: High Triplet Pure Hydrocarbon Hosts for Highly Efficient Blue Phosphorescent Organic Light-Emitting Diodes.

作者信息

Ari Denis, Yang Yue-Jian, Quinton Cassandre, Jiang Zuo-Quan, Zhou Dong-Ying, Poriel Cyril

机构信息

Univ Rennes, CNRS, ISCR-UMR CNRS 6226, F-35000, Rennes, France.

Institute of Functional Nano & Soft Materials (FUNSOM), Soochow University, 99 Renai Rd., Suzhou Industrial Park, Suzhou, Jiangsu, 215000, China.

出版信息

Angew Chem Int Ed Engl. 2024 Jul 29;63(31):e202403066. doi: 10.1002/anie.202403066. Epub 2024 Jun 30.

DOI:10.1002/anie.202403066
PMID:38752880
Abstract

Pure aromatic hydrocarbon materials (PHCs) represent a new generation of host materials for phosphorescent OLEDs (PhOLEDs), free of heteroatoms. They reduce the molecular complexity, can be easily synthesized and are an important direction towards robust devices. As heteroatoms can be involved in bonds dissociations in operating OLEDs through exciton induced degradation processes, developing novel PHCs appear particularly relevant for the future of this technology. In the present work, we report a series of extended PHCs constructed by the assembly of three spirobifluorene fragments. The resulting positional isomers present a high triplet energy level, a wide HOMO/LUMO difference and improved thermal and morphological properties compared to previously reported PHCs. These characteristics are beneficial for the next generation of host materials for PhOLEDs and provide relevant design guidelines. When used as a host in blue-emitting PhOLEDs, which are still the weakest link of the field, a very high EQE of 24 % and low threshold voltage of 3.56 V were obtained with a low-efficiency roll-off. This high performance strengthens the position of PHC strategy as an efficient alternative for OLED technology and opens the way to a more simple electronic.

摘要

纯芳烃材料(PHCs)代表了用于磷光有机发光二极管(PhOLEDs)的新一代主体材料,不含杂原子。它们降低了分子复杂性,易于合成,是实现稳健器件的一个重要方向。由于杂原子可通过激子诱导降解过程参与工作中的有机发光二极管的键解离,因此开发新型PHCs对于该技术的未来显得尤为重要。在本工作中,我们报道了一系列由三个螺二芴片段组装而成的扩展型PHCs。与先前报道的PHCs相比,所得的位置异构体呈现出高的三重态能级、宽的HOMO/LUMO差值以及改善的热性能和形态性能。这些特性有利于下一代PhOLEDs主体材料,并提供了相关的设计指导方针。当用作蓝色发光PhOLEDs(该领域仍然最薄弱的环节)的主体时,获得了24%的非常高的外量子效率(EQE)和3.56 V的低阈值电压,且效率滚降较低。这种高性能巩固了PHC策略作为有机发光二极管技术有效替代方案的地位,并为更简单的电子器件开辟了道路。

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