首页> 外文期刊>The Journal of Organic Chemistry >Nondoped Pure-Blue OLEDs Based on Amorphous Phenylenevinylene-Functionalized Twisted Bimesitylenes
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Nondoped Pure-Blue OLEDs Based on Amorphous Phenylenevinylene-Functionalized Twisted Bimesitylenes

机译:基于无定形苯乙烯撑官能化扭曲的二甲苯的非掺杂纯蓝色OLED

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The twisted bimesitylene scaffold hinders crystallization and imparts amorphous nature to the oligophenylenevinylenes (OPVs) generated by 2- and/or 4-fold functionalization. The resultant phenylenevinylenes 1-5 with unique molecular topology exhibit excellent thermal and solid-state luminescence properties. The amorphous nature permits their application as pure-blue emissive materials in OLEDs. Under nondoped conditions, the device performances observed surpass those for analogous and simple oligophenylenevinylenes known so far; for example, the device based on OPV 2 as an emitting material and structurally analogous Bim-DPAB as a hole-transporting material yields pure-blue electroluminescence with an external quantum efficiency of ca. 4.70% at 20 mA/cm2, which is higher than those reported for nondoped pure-blue OPV emitters.
机译:扭曲的二聚偏二甲苯基支架阻碍了结晶并赋予由2倍和/或4倍官能化作用生成的低聚亚苯基亚乙烯基(OPV)非晶态。所得的具有独特分子拓扑的亚苯基亚乙烯基1-5显示出优异的热和固态发光性能。无定形性质允许它们作为纯蓝色发光材料应用于OLED。在非掺杂条件下,观察到的器件性能超过了迄今为止已知的类似和简单的低聚亚苯基亚乙烯基。例如,基于OPV 2作为发光材料,基于结构类似的Bim-DPAB作为空穴传输材料的器件会产生纯蓝色电致发光,其外部量子效率约为。在20 mA / cm2时为4.70%,高于非掺杂纯蓝色OPV发射器的报告值。

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