有机发光二极管
材料科学
咔唑
量子产额
光致发光
共发射极
荧光
光电子学
量子效率
二极管
光化学
电致发光
偶极子
兴奋剂
激子
二面角
半最大全宽
产量(工程)
环氧乙烷
苯甲腈
氧化物
猝灭(荧光)
甲基紫
作者
Jinho Park,Junyoung Moon,Seungwon Han,Dong Ryun Lee,Han Jin Ahn,Jun Yun Kim,Ji‐Ho Baek,Eli Zysman‐Colman,Jun Yeob Lee
摘要
ABSTRACT Achieving violet emission with both high efficiency and excellent color purity remains a major challenge for organic light‐emitting diodes (OLEDs). In this study, we report two isomeric multiple resonance thermally activated delayed fluorescence (MR‐TADF) emitters based on 5,9‐dioxa‐13b‐boranaphtho[3,2,1‐de]anthracene and carbazole frameworks. Phenyl groups were strategically introduced adjacent to the carbazole units to induce molecular twisting, thereby increasing the dihedral angles and enhancing the TADF properties. Among them, 9,9'‐(4,10‐diphenyl‐DOBNA‐3,11‐diyl)bis(9H‐carbazole) ( BO‐2CzPh‐2 ) exhibited a narrowband violet emission at 408 nm with a full width at half maximum of 27 nm in toluene. In a 10 wt% doped film using bis[2‐(diphenylphosphino)phenyl]ether oxide as the host, the emitter also has a near unity photoluminescence quantum yield of 99% and a high degree of horizontal emitting dipole orientation of 88.8%. The OLEDs with BO‐2CzPh‐2 showed violet emission at 432 nm, an exceptionally high maximum external quantum efficiency of 25.6%, and CIE coordinates of (0.156, 0.035), showing minimal spectral shift at high doping concentrations. These results highlight the effectiveness of simple molecular twisting in improving both TADF performance and outcoupling efficiency, providing a promising pathway for efficient violet OLED applications.
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