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首页> 外文期刊>Dyes and Pigments >Di(biphenyl)silane and carbazole based bipolar host materials for highly efficient blue phosphorescent OLEDs
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Di(biphenyl)silane and carbazole based bipolar host materials for highly efficient blue phosphorescent OLEDs

机译:二(共苯基)硅烷和基于咔唑的双极主体材料,用于高效的蓝磷光OLED

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摘要

In this paper, a series of new bipolar blue host materials has been designed and synthesized by incorporating dimethyl or diphenyl silane core with connection of carbazole di(biphenyl) groups at different linking positions. The triplet energies and charge-transporting properties of these bipolar host compounds are controlled by restricting or enhancing the conjugation length among silane, biphenyl, and carbazole units. All materials exhibit good thermal/morphological stabilities. Among these host molecules diphenyldi(4-(3,5-bis-carbazol-9-yl)phenyl)phenyl silane (DM4CzDBPSi) showed the highest triplet energy (2.82 eV) and glass transition temperature (197 degrees C) along with optimal bipolar charge transporting property. A phosphorescent blue organic light-emitting diode with DM4CzDBPSi silane host and Flrpic dopant system demonstrated best device performances with maximum external quantum efficiency of 20.9% and a power efficiency of 41.28 lm/W. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文通过在不同连接位置掺入具有与咔唑二(联苯)基团的二甲基或二苯基硅烷芯来设计和合成了一系列新的双极蓝色主体材料。通过限制或增强硅烷,联苯基和咔唑单元之间的共轭长度来控制这些双极宿主化合物的三态能量和电荷传输性能。所有材料表现出良好的热/形态稳定性。在这些宿主分子中,Diphenyldi(4-(3,5-双 - 咔唑-9-基)苯基)苯基硅烷(DM4CZDBPSI)显示出最高的三重态能量(2.82eV)和玻璃化转变温度(197摄氏度)以及最佳双极性充电运输财产。磷光蓝有机发光二极管与DM4CZDBPSI硅烷宿主和FLRPIC掺杂系统展示了最佳的设备性能,最大外部量子效率为20.9%,功率效率为41.28升。 (c)2016 Elsevier Ltd.保留所有权利。

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