首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A high triplet energy, high thermal stability oxadiazole derivative as the electron transporter for highly efficient red, green and blue phosphorescent OLEDs
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A high triplet energy, high thermal stability oxadiazole derivative as the electron transporter for highly efficient red, green and blue phosphorescent OLEDs

机译:高三重态能量,高热稳定性的恶二唑衍生物作为高效红色,绿色和蓝色磷光OLED的电子传输剂

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摘要

A high glass transition temperature (T-g = 220 degrees C), high triplet energy gap (E-T = 2.76 eV) and high electron mobility material bis(m-terphenyl) oxadiazole was readily synthesized. It can serve as a universal electron transporter for blue, green and red phosphorescent OLEDs with excellent efficiencies. The material shows high current density compared to other electron transport materials and exhibits reduced driving voltage for all color PhOLEDs irrespective of the energy level of the host materials, due to efficient electron injection from 2,5-di([1,1':3',1 ''-terphenyl]-5'-yl)-1,3,4-oxadiazole (TPOTP) to the host material. For the green PhOLED, maximum external quantum efficiency (EQE) over 25%, current efficiency of 97.6 cd A(-1) and power efficiency of 100.6 lm W-1 were achieved. The red and blue devices using TPOTP as the electron transporter also show EQE higher than 23% with very low roll-off in efficiencies in practical brightness level.
机译:容易合成高玻璃化转变温度(T-g = 220摄氏度),高三重态能隙(E-T = 2.76 eV)和高电子迁移率材料双(间三联苯)恶二唑。它可以用作蓝色,绿色和红色磷光OLED的通用电子传输器,具有出色的效率。与其他电子传输材料相比,该材料显示出较高的电流密度,并且由于基质从2,5-di([1,1':3 ',1''-三联苯基] -5'-基)-1,3,4-恶二唑(TPOTP)转移至主体材料。对于绿色PhOLED,最大外部量子效率(EQE)超过25%,电流效率为97.6 cd A(-1),功率效率为100.6 lm W-1。使用TPOTP作为电子传输体的红色和蓝色设备也显示出EQE高于23%,并且实际亮度水平上的滚降效率非常低。

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