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Starburst Type Benzofuroindolocarbazole Donor for High Efficiency and Long Lifetime in Thermally Activated Delayed Fluorescence Emitters

机译:Starburst型Benzofuroindolocarbazole供体,用于高效率和长寿命的热活化延迟荧光发射器

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摘要

A series of thermally activated delayed fluorescence (TADF) emitters of 5-(4,6-diphenyl-1,3,5-triazin-2-yl)-2-(15-phenylbenzofuro[3,2-a]indolo[3,2-c]carbazol-10(15H)-yl)benzonitrile (TrzCNTrx1) and 5-(4,6-diphenyl-1,3,5-triazin-2-yl)-2-(10-phenylbenzofuro[3,2-a]indolo[3,2-c]carbazol-15(10H)-yl)benzonitrile (TrzCNTrx2) are developed through a molecular design strategy that incorporates a starburst type benzofuro[3,2-a]indolo[3,2-c]carbazole as a rigid donor. The benzofuro[3,2-a]indolo[3,2-c]carbazole is developed as a strong and rigid donor for strong charge transfer character in the TADF emitter in combination with a diphenyltriazine acceptor and a benzonitrile linker. Two starburst type donors with different active sites for the aromatic linker substitution are prepared. Among the TrzCNTrx1 and TrzCNTrx2 emitters, the TrzCNTrx2 emitter shows a small singlet-triplet energy gap below 0.10 eV, high photoluminescence quantum yields over 90%, and short exciton lifetimes less than 5.0 mu s. In the device application, the TrzCNTrx2 emitter shows maximum external quantum efficiency of 20.6% with little efficiency roll-off less than 2% at 3000 cd m(-2) and color coordinate of (0.37, 0.57). Moreover, the TrzCNTrx2 device is much better than the TrzCNTrx1 in terms of device lifetime because of short delayed fluorescence lifetime.
机译:一系列热活化的延迟荧光(TADF)发射器为5-(4,6-二苯基-1,3,5-三嗪-2-基)-2-(15-苯基苯并呋喃[3,2-A] Indolo [3 ,2-c]咔唑-10(15h) - 烯苄腈(Trzcntrx1)和5-(4,6-二苯基-1,3,5-三唑-2-基)-2-(10-苯基苯并呋喃[3, Indolo [3,2-C]咔唑-15(10H) - 基)苄腈(TRZCNTRX2)通过包含突出型Benzofuro [3,2-A] Indolo的分子设计策略进行显影[3,2 -C]咔唑作为刚性供体。 Benzofuro [3,2-A] Indolo [3,2-C]咔唑被开发为强刚和刚性供体,用于TADF发射器中的强电荷转移特征,与二苯基三嗪受体和苯腈接头组合。制备两个具有不同活性部位的恒星型捐赠者,用于芳香接头取代。在TRZCNTRX1和TRZCNTRX2发射器中,TRZCNTRX2发射器显示出低于0.10eV的小单态三重态能量隙,高光致发光量子产量超过90%,并且短的激子寿命小于5.0μm。在设备应用中,TRZCNTRX2发射器显示出最大的外部量子效率为20.6%,效率几乎没有3000cd m(-2)和(0.37,0.57)的颜色坐标小于2%。此外,由于短延迟荧光寿命,TRZCNTRX2器件在设备寿命方面远优于TRZCNTRX1。

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