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Highly efficient solution-processed green and red electrophosphorescent devices enabled by small-molecule bipolar host material

机译:小分子双极性主体材料可实现高效溶液处理的绿色和红色电致磷光器件

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摘要

A solution-processable host molecule TPO comprised of hole-transporting triphenylamine and electron-transporting oxadiazole has been synthesized. Through meta-linkage between the donor and the acceptor, complete charge localization of the HOMO and LUMO and proper triplet energy are imparted. The new compound shows good thermal stability with a high glass-transition temperature of 131 ℃. Smooth and homogeneous film can be obtained by spin-coating from a TPO/iridium complex blend as probed by atomic force microscopy. The solution-processed red phosphorescent organic light-emitting device (PhOLED) achieves a maximum current efficiency of 13.3 cd A~(-1) with Commission Internationale de l'Eclairage coordinates of (0.64, 0.36); while the green device reaches a maximum current efficiency of 40.8 cd A~(-1), and the value is still as high as 39.6 cd A~(-1) at a practical luminance of 1000 cd m~(-2). The low roll-off can be attributed to the bipolar nature of the host material TPO. An optimized device further elevates the efficiency to 56.8 cd A~(-1), which is among the highest ever reported for small-molecule based green PhOLEDs fabricated by a wet process.
机译:已经合成了由空穴传输性三苯胺和电子传输性恶二唑组成的溶液可加工主体分子TPO。通过供体和受体之间的元链接,可以实现HOMO和LUMO的完全电荷定位以及适当的三线态能量。新化合物具有良好的热稳定性,玻璃化转变温度高达131℃。通过原子力显微镜探测的TPO /铱络合物共混物的旋涂可以得到光滑均匀的薄膜。固溶处理的红色磷光有机发光器件(PhOLED)达到的最大电流效率为13.3 cd A〜(-1),国际照明委员会坐标为(0.64,0.36);绿色器件的最大电流效率达到40.8 cd A〜(-1),在实际亮度1000 cd m〜(-2)时,该值仍高达39.6 cd A〜(-1)。低滚降可归因于主体材料TPO的双极性性质。经过优化的器件可将效率进一步提高到56.8 cd A〜(-1),这是有报道的通过湿法工艺制造的基于小分子的绿色PhOLED的最高效率之一。

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