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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A simple systematic design of phenylcarbazole derivatives for host materials to high-efficiency phosphorescent organic light-emitting diodes
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A simple systematic design of phenylcarbazole derivatives for host materials to high-efficiency phosphorescent organic light-emitting diodes

机译:用于高效磷光有机发光二极管主体材料的苯基咔唑衍生物的简单系统设计

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摘要

A series of novel blue phosphorescent host materials, namely, CTP-1, CTP-2 and CTP-3 have been designed and synthesized through the Suzuki-Miyaura cross-coupling reaction between A/-phenylcarbazole and biphenyl. Their thermal, photophysical and electrochemical properties were systematically investigated. These novel hosts show excellent thermal stability and high glass transition temperatures (T_g) ranging from 113 to 127 °C. The triplet energies of these three materials are significantly higher than that of (4,4'-bis(N-carbazolyl)-2,2'-biphenyl) (CBP, 2.56 eV) and that of the most popular blue phosphorescent material iridium(m) bis[(4,6-difluorophenyl)pyridinato-N,C2'] picolinate (Flrpic, 2.65 eV). These three novel materials have superior thermal and electronic properties for blue and white phosphorescent OLEDs. Blue emitting devices with an Ir-complex Flrpic as the phosphorescent dopant have been fabricated and show high efficiency with low roll-off. In particular, 40.4 cd A~(-1) at 100 cd m~(-2) and 38.2 cd A~(-1) at 1000 cd m~(-2) were achieved when CTP-1 was used as the host material. On the basis of this work, an all-phosphor white device with a current efficiency of 64.5 cd A~(-1) at 100 cd m~(-2) and 61.9 cd A~(-1) at 1000 cd m~(-2) has also been fabricated.
机译:通过A /-苯基咔唑与联苯之间的Suzuki-Miyaura交叉偶联反应,设计和合成了一系列新颖的蓝色磷光主体材料,即CTP-1,CTP-2和CTP-3。系统地研究了它们的热,光物理和电化学性质。这些新颖的基质表现出出色的热稳定性和高玻璃化转变温度(T_g),范围从113到127°C。这三种材料的三重态能量明显高于(4,4'-双(N-咔唑基)-2,2'-联苯)(CBP,2.56 eV)和最流行的蓝色磷光材料铱( m)双[(4,6-二氟苯基)吡啶基-N,C2']吡啶甲酸酯(Flrpic,2.65eV)。这三种新型材料对蓝色和白色磷光OLED具有优异的热和电子性能。已经制造了具有Ir复合Flrpic作为磷光掺杂剂的蓝色发射器件,并显示出高效率和低滚降。特别地,当使用CTP-1作为基质材料时,在100 cd m〜(-2)下达到40.4 cd A〜(-1),在1000 cd m〜(-2)下达到38.2 cd A〜(-1)。 。基于这项工作,在100 cd m〜(-2)时电流效率为64.5 cd A〜(-1),而在1000 cd m〜(6)cd时的电流效率为61.9 cd A〜(-1)。 -2)也已被制造出来。

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