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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Fluorinated 9,9'-bianthracene derivatives with twisted intramolecular charge-transfer excited states as blue host materials for high-performance fluorescent electroluminescence
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Fluorinated 9,9'-bianthracene derivatives with twisted intramolecular charge-transfer excited states as blue host materials for high-performance fluorescent electroluminescence

机译:具有扭曲的分子内电荷转移激发态的氟化9,9'-联蒽衍生物为蓝色主体材料,用于高性能荧光电致发光

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We report the electroluminescent (EL) performance of a series of fluorinated 9,9'-bianthracene derivatives (BAnFs) to serve as host materials for selected dopants in organic light-emitting diodes (OLEDs). Different F substitution patterns strongly affect the EL performances. In particular, 10,10'-bis(4-fluorophenyl)-9,9'-bianthracene (BAn-(4)-F) works as an excellent fluorescent host for N,N-diphenylamino phenyl vinyl biphenyl (DPAVBi) and 10-(2-benzothiazolyl)-1,1,7,7-tetramethyl-2,3,6,7-tetrahydro-1H,5H,11H-benzo[l] pyrano(6,7,8-ij)quinolizin-11-one (C545T) dopants to obtain high-performance OLEDs with excellent external quantum efficiencies (EQEs) of 5.43% and 5.20%, respectively. We demonstrate that the improved EQEs are due to the enhanced occurrence of singlet excitons in BAn-(4)-F-based EL devices. The BAn-(4)-F host molecule with a particular twisted intramolecular charge-transfer (TICT) excited state, which participates in a charge-transfer (CT) intersystem crossing mechanism, realizes transitions from the triplet to singlet CT-states. At the dopant site, the available singlet excitons formed via Forster energy transfer from host BAn-(4)-F to dopant are greatly increased. We conclude that the BAn-(4)-F host based on 9,9'-bianthracene can significantly enhance the singlet generation fraction in EL devices.
机译:我们报告了一系列的氟化9,9'-联蒽衍生物(BAnFs)的电致发光(EL)性能,可作为有机发光二极管(OLED)中选定掺杂剂的主体材料。不同的F替换模式会强烈影响EL性能。特别是10,10'-双(4-氟苯基)-9,9'-联蒽(BAn-(4)-F)是N,N-二苯氨基苯基乙烯基联苯(DPAVBi)和10的出色荧光主体-(2-苯并噻唑基)-1,1,7,7-四甲基-2,3,6,7-四氢-1H,5H,11H-苯并[l]吡喃并(6,7,8-ij)喹诺嗪-11 -一种(C545T)掺杂剂可获得高性能的OLED,其具有分别为5.43%和5.20%的出色的外部量子效率(EQE)。我们证明,改进的EQE是由于在基于BAn-(4)-F的EL设备中单重态激子的发生增加。具有特定的扭曲的分子内电荷转移(TICT)激发态的BAn-(4)-F宿主分子参与电荷转移(CT)系统间交叉机制,实现了从三重态到单重态CT态的转变。在掺杂位点,通过从主体BAn-(4)-F到掺杂剂的Forster能量转移形成的可用单线态激子大大增加。我们得出的结论是,基于9,9'-联蒽的BAn-(4)-F宿主可以显着增强EL器件中的单线态生成分数。

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