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A twisted phenanthroimidazole based molecule with high triplet energy as a host material for high efficiency phosphorescent OLEDs

机译:基于高效率磷光OLED的扭曲菲咪唑基的基于高三重素能的分子

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摘要

For host materials, a high triplet energy level and bipolar charge transport ability are crucial properties to achieve high performance phosphorescent organic light-emitting devices (OLEDs). A unique host material, 2,2-bis(1-phenyl-1H-phenanthro[9,10-d]imidazol-2-yl)biphenyl (BP-DPPI), was designed and synthesized by introducing two phenanthroimidazole groups onto the lateral o,o-positions of a biphenyl skeleton. The highly twisted molecular conformation endows the compound with excellent thermal stability with a glass transition temperature of 170 degrees C and a high triplet energy of 2.72 eV. In addition, BP-DPPI exhibits bipolar carrier transport ability for holes and electrons. The green phosphorescent OLED with BP-DPPI as a host material exhibited a maximum external quantum efficiency (EQE) of 26.6% and a power efficiency (PE) of 92.7 lm W-1. More importantly, the device shows low efficiency roll-off, retaining a high EQE value of 23.6% at the routinely practical luminance of 1000 cd m(-2).
机译:对于主体材料,高三重能量水平和双极电荷输送能力是实现高性能磷光有机发光器件(OLED)的关键性质。设计和合成了独特的主体材料,2,2-BIS(1-苯基-1H-菲拉米酚-2-基)联苯(BP-DPPI),通过将两种菲咪唑基团引入侧面o,联苯骨架的O位置。高捻的分子构象具有优异的热稳定性,具有170℃的玻璃化转变温度和2.72eV的高三重态能量。此外,BP-DPPI表现出孔和电子的双极载体传输能力。具有BP-DPPI作为主体材料的绿色磷光OLED表现出26.6%的最大外部量子效率(EQE)和92.7 LM W-1的功率效率(PE)。更重要的是,该装置显示低效率滚动,在1000cdm(-2)的常规实用亮度下保持高EQE值为23.6%。

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