首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Small single-triplet energy gap bipolar host materials for phosphorescent blue and white organic light emitting diodes
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Small single-triplet energy gap bipolar host materials for phosphorescent blue and white organic light emitting diodes

机译:用于磷光蓝色和白色有机发光二极管的小型单三重态能隙双极主体材料

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摘要

We report extremely high efficiency tandem white organic light-emitting diodes (OLEDs) with newly synthesized host materials. Our new host materials have well balanced bipolar characteristics and very small singlet to triplet splitting energies (~0.4 eV) due to almost no orbital overlapping between ground and excited states. The fabricated blue phosphorescent device with one of these host materials shows very high external quantum efficiency of 25.7%, low onset and driving voltages of 2.47 V and 3.49 V at 1 and 1000 cd m~2, respectively. High performance asymmetric tandem OLEDs could be fabricated by adopting these efficient and low driving voltage blue unit and very efficient yellow unit devices. Power efficiency of 63.1 Im W~(-1) and current efficiency of 128.8 cd A~(-1) at 1000 cd nrr2 were achieved without any light out-coupling technology. We expect that blue phosphorescent OLEDs with our new narrow band-gap bipolar host materials could be a promising solution to make high efficiency white OLEDs for display and lighting applications.
机译:我们报告了具有新合成主体材料的超高效率串联白色有机发光二极管(OLED)。由于基态和受激态之间几乎没有轨道重叠,我们的新型主体材料具有良好的平衡双极特性和非常小的单重态至三重态分裂能(〜0.4 eV)。用这些主体材料之一制成的蓝色磷光器件在1和1000 cd m〜2时表现出非常高的25.7%的外部量子效率,低的起始电压和2.47 V和3.49 V的驱动电压。可以通过采用这些高效和低驱动电压的蓝色单元和非常高效的黄色单元设备来制造高性能不对称串联OLED。在不使用任何光输出耦合技术的情况下,在1000 cd nrr2的功率效率为63.1 Im W〜(-1),电流效率为128.8 cd A〜(-1)。我们期望,采用我们新型的窄带隙双极主体材料的蓝色磷光OLED可能成为制造用于显示和照明应用的高效白色OLED的有前途的解决方案。

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