激进的
光化学
量子产额
发光
轨道能级差
接受者
分子
化学
量子效率
材料科学
光电子学
荧光
物理
有机化学
光学
凝聚态物理
作者
Haoqing Guo,Qiming Peng,Xiankai Chen,Qinying Gu,Shengzhi Dong,Emrys W. Evans,Alexander J. Gillett,Xin Ai,Ming Zhang,Dan Credgington,Veaceslav Coropceanu,Richard H. Friend,Jean‐Luc Brédas,Feng Li
出处
期刊:Nature Materials
[Nature Portfolio]
日期:2019-07-22
卷期号:18 (9): 977-984
被引量:313
标识
DOI:10.1038/s41563-019-0433-1
摘要
With their unusual electronic structures, organic radical molecules display luminescence properties potentially relevant to lighting applications; yet, their luminescence quantum yield and stability lag behind those of other organic emitters. Here, we designed donor–acceptor neutral radicals based on an electron-poor perchlorotriphenylmethyl or tris(2,4,6-trichlorophenyl)methyl radical moiety combined with different electron-rich groups. Experimental and quantum-chemical studies demonstrate that the molecules do not follow the Aufbau principle: the singly occupied molecular orbital is found to lie below the highest (doubly) occupied molecular orbital. These donor–acceptor radicals have a strong emission yield (up to 54%) and high photostability, with estimated half-lives reaching up to several months under pulsed ultraviolet laser irradiation. Organic light-emitting diodes based on such a radical emitter show deep-red/near-infrared emission with a maximal external quantum efficiency of 5.3%. Our results provide a simple molecular-design strategy for stable, highly luminescent radicals with non-Aufbau electronic structures. Organic radical molecules violating the Aufbau principle are shown to reach high luminescence quantum yield and photostability, with potential applications for deep-red and near-infrared light-emitting sources.
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