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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Bipolar host materials for high efficiency phosphorescent organic light emitting diodes: tuning the HOMO/LUMO levels without reducing the triplet energy in a linear system
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Bipolar host materials for high efficiency phosphorescent organic light emitting diodes: tuning the HOMO/LUMO levels without reducing the triplet energy in a linear system

机译:用于高效磷光有机发光二极管的双极性主体材料:调节HOMO / LUMO含量,而不会降低线性系统中的三重态能量

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摘要

Two novel bipolar host materials, BCzSCN and BCzSPO, consisting of an electron deficient cyano or diphenylphosphine oxide acceptor linked to a bicarbazole donor, were designed and synthesized. Their thermal, photophysical and electrochemical properties were systematically investigated. Both BCzSCN and BCzSPO show high triplet energies of over 2.75 eV and could be developed for application in blue phosphorescent organic light-emitting diodes (PHOLEDs), and further for white PHOLEDs. Moreover, the characterization of hole-only and electron-only devices based on BCzSCN and BCzSPO indicate their rather balanced hole/electron injection and transport properties. Blue PHOLEDs containing BCzSCN and BCzSPO as the hosts and Flrpic as a dopant exhibited excellent performance, with maximum external quantum efficiencies of 19.3% and 17.1% respectively. In particular, blue PHOLEDs adopting BCzSCN and BCzSPO exhibited extraordinary low efficiency roll-offs of 5.2% and 7.6% at a brightness of 1000 cd m~(-2), respectively. Meanwhile, the all-phosphor near-white devices hosted by the two materials were also fabricated, and high external quantum efficiencies of 22.0% and 21.3% were achieved.
机译:设计并合成了两种新型的双极性主体材料BCzSCN和BCzSPO,它们由与联咔唑供体连接的缺电子的氰基或二苯基膦氧化物受体组成。系统地研究了它们的热,光物理和电化学性质。 BCzSCN和BCzSPO都显示超过2.75 eV的高三重态能量,可以开发用于蓝色磷光有机发光二极管(PHOLED),还可以用于白色PHOLED。此外,基于BCzSCN和BCzSPO的仅空穴和仅电子器件的表征表明它们相当平衡的空穴/电子注入和传输特性。含有BCzSCN和BCzSPO作为主体和Flrpic作为掺杂剂的蓝色PHOLED表现出优异的性能,最大外部量子效率分别为19.3%和17.1%。特别是,采用BCzSCN和BCzSPO的蓝色PHOLED在1000 cd m〜(-2)的亮度下分别显示出5.2%和7.6%的异常低效率滚降。同时,还制造了由两种材料构成的全磷近白色器件,并实现了22.0%和21.3%的高外部量子效率。

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