首页> 外文期刊>Advanced Optical Materials >Color-Tunable Boron-Based Emitters Exhibiting Aggregation-Induced Emission and Thermally Activated Delayed Fluorescence for Efficient Solution-Processable Nondoped Deep-Blue to Sky-Blue OLEDs
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Color-Tunable Boron-Based Emitters Exhibiting Aggregation-Induced Emission and Thermally Activated Delayed Fluorescence for Efficient Solution-Processable Nondoped Deep-Blue to Sky-Blue OLEDs

机译:基于颜色的硼的发射器,具有聚集诱导的发射和热活化的延迟荧光,用于有效的解决方案可加工的深蓝色至天蓝色OLED

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Abstract Three new color‐tunable (deep‐blue to sky‐blue) and solution‐processable emitters—9′‐(2,12‐di‐tert‐butyl‐5,9‐dioxa‐13b‐boranaphtho[3,2,1‐de]anthracen‐7‐yl)‐9′H‐9,3′:6′,9″‐tercarbazole (TB‐3Cz), 9′‐(2,12‐di‐tert‐butyl‐5,9‐dioxa‐13b‐boranaphtho[3,2,1‐de]anthracen‐7‐yl)‐9,9″‐diphenyl‐9H,9′H,9″H‐3,3′:6′,3″‐tercarbazole (TB‐P3Cz), and 9‐(2,12‐di‐tert‐butyl‐5,9‐dioxa‐13b‐boranaphtho[3,2,1‐de]anthracen‐7‐yl)‐N3,N3,N6,N6‐tetraphenyl‐9H‐carbazole‐3,6‐diamine (TB‐DACz)—are demonstrated, which are cleverly designed and synthesized by appending a boron‐fused entity as an electron acceptor to different electron‐rich entities containing carbazole derivatives as donors. The thermal, photophysical, electrochemical, and electroluminescent characteristics of all the new materials are extensively investigated. Comprehensive photophysical investigations reveal that these emitters exhibit not only thermally activated delayed fluorescence (TADF) but also aggregation‐induced emission (AIE) properties. Consequently, solution‐processable organic light‐emitting diodes (OLEDs) fabricated using these new materials as nondoped emitters in the emissive layer exhibit a maximum external quantum efficiency (EQE) and Commission Internationale de l'Éclairage (CIE) color coordinates of 9.90% and (0.17, 0.07), respectively, for TB‐3Cz; 6.13% and (0.15, 0.08), respectively, for TB‐P3Cz; and 6.04% and (0.18, 0.40), respectively, for TB‐DACz. As far as it is known, the performance and ultrahigh color purity satisfying the deep‐blue CIE coordinates of the National Television System Committee (NTSC) for TB‐3Cz and TB‐P3Cz are the highest reported thus far for nondoped solution‐processable TADF emitters, indicating the great potential of these materials as deep‐blue luminogens in OLED applications.
机译:摘要三种新的颜色可调(深蓝色至天蓝色)和解决方案 - 加工发射器-9' - (2,12-二叔丁基-5,9-dioxa-13b-boranaphtho [3,2,1 -DE]蒽酮-7-基)-9'H-9,3':6',9“ - 咔唑(TB-3CZ),9' - (2,12-二叔丁基-5,9- Dioxa-13b-boranaphtho [3,2,1-de]蒽-7-基)-9,9“ - 二苯基-9h,9'h,9”H-3,3':6',3“ - 咔唑(TB-P3CZ)和9-(2,12-二叔丁基-5,9-DIOxA-13B-硼酰基[3,2,1-DE]蒽-7-基)-N3,N3,N6 ,N6-四苯基-9H-咔唑-3,6-二胺(TB-DACZ) - 通过将硼熔融实体作为电子受体附加到含有咔唑衍生物的不同电子的实体,这是巧妙的设计和合成的。捐助者。所有新材料的热,光药,电化学和电致发光特性都被广泛研究。全面的光药研究表明,这些发射器不仅具有热活化的延迟荧光(TADF),而且表现出聚集诱导的发射(AIE)性质。因此,使用这些新材料制造的溶液可加工的有机发光二极管(OLED)在发光层中的NONDOPED发射器制造的最大外部量子效率(EQE)和Internationale de L'éclairage(CIE)颜色坐标为9.90% (0.17,0.07),分别用于TB-3CZ;对于TB-P3CZ,分别为6.13%和(0.15,0.08);对于TB-Dacz,分别为6.04%和(0.18,0.40)。据称,满足国家电视系统委员会(NTSC)的性能和超高色纯度为TB-3CZ和TB-P3CZ是迄今为止最高报告的,对非常合的解决方案可加工的TADF发射器迄今为止,表明这些材料在OLED应用中的深蓝色发光剂的巨大潜力。

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