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首页> 外文期刊>Synthetic Metals >Pyrimidine based hole-blocking materials with high triplet energy and glass transition temperature for blue phosphorescent OLEDs
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Pyrimidine based hole-blocking materials with high triplet energy and glass transition temperature for blue phosphorescent OLEDs

机译:基于嘧啶的空穴阻挡材料,具有高三重能量和玻璃化转变温度的蓝磷光果

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摘要

We designed and synthesized new hole-blocking materials (HBMs), mPyrPPB and pPPyrPB, consisting of pyrimidine and phenylene segments for high-performance blue phosphorescent OLEDs. The thermal, electrochemical, and optical properties of mPyrPPB and pPPyrPB were systemically investigated. It was found that the T-g values of mPyrPPB and pPPyrPB were 118 and 137 degrees C, respectively. Especially, the triplet energy and highest occupied molecular orbital (HOMO) energy level of mPyrPPB were 2.77 eV and -6.86 eV, respectively, indicating that it had sufficiently high triplet energy and deep HOMO energy level for the hole-blocking layer (HBL) in blue phosphorescent OLED devices. It was found that all the meta conjugation of mPyrPPB molecular structure effectively prevented x-electron delocalization and thus increased the triplet energy and electron transport property. In addition, mPyrPPB exhibited higher electron-transporting property than pPPyrPB because mPyrPPB possessed effective intermolecular hydrogen bonds. When mPyrPPB was utilized as a HBM for a blue phosphorescent OLED device, external quantum efficiency (EQE), current efficiency (CE), and power efficiency (PE) values effectively increased to 16.4%, 36.7 cd/A, and 13.4 lm/W, respectively. Compared to the reference device without HBM, EQE, CE, and PE increased by 38%, 35%, and 54% respectively, mainly due to the confinement of triplet excitons and holes and improved electron-transporting ability.
机译:我们设计和合成了新的空穴阻断材料(HBMS),MPYRPPB和PPPFRPB,由嘧啶和亚苯基片段组成,用于高性能蓝磷光OLED。 MPYRPPB和PPPROPB的热,电化学和光学性质系统地研究。发现MPYRPPB和PPPFRPB的T-G值分别为118和137摄氏度。特别地,MPyrPPB的三重态能量和最高占用的分子轨道(HOMO)能级分别为2.77eV和-6.86eV,表明它具有足够高的三态能量和空穴阻挡层(HBL)的深层能量水平蓝磷光OLED器件。结果发现,MPyRPPB的所有META缀合分子结构有效地防止了X型电子移植化,从而增加了三重态能量和电子传输性能。此外,MPyRPPB表现出比PPPyrPB更高的电子传输性质,因为MPyRPPB具有有效的分子间氢键。当MPYRPPB用作蓝磷光OLED器件的HBM时,外部量子效率(EQE),电流效率(CE)和功率效率(PE)值有效地增加到16.4%,36.7cd / A和13.4 LM / W. , 分别。与没有HBM的参考装置相比,EQE,Ce和PE分别增加了38%,35%和54%,主要是由于三重态激子和孔的限制以及改善的电子传输能力。

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