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Electron and hole transport in a wide bandgap organic phosphine oxide for blue electrophosphorescence

机译:宽带隙有机氧化膦中的电子和空穴传输,用于蓝色电致磷光

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摘要

We report blue phosphorescent organic light-emitting devices (OLEDs) using an ambipolar host, N-(4-diphenylphosphoryl phenyl) carbazole (MPO12), doped with iridium (Ⅲ) bis[(4,6-difluorophenyl)-pyridinato-N,C~(2′) Jpicolinate (FIrpic). The external quantum efficiency and operating voltage is 9.1(±0.1)% and 4.8 V, respectively, measured at a brightness of 800 cd/m~2 with no outcoupling enhancement. By varying the layer structure of the OLEDs, we show that MPO12 is capable of transporting both electrons and holes, in contrast to previous demonstrations using diphosphine oxides, which only transported electrons. The improved hole transport results in improved device efficiency.
机译:我们报告了使用双极性主体N-(4-二苯基磷酰基苯基)咔唑(MPO12)掺杂有铱(Ⅲ)双[(4,6-二氟苯基)-吡啶基-N,的蓝色磷光有机发光器件(OLED), C〜(2')吡啶甲酸(FIrpic)。外部量子效率和工作电压分别为9.1(±0.1)%和4.8 V,在800 cd / m〜2的亮度下没有外耦合增强。通过改变OLED的层结构,我们证明MPO12能够传输电子和空穴,这与以前使用仅传输电子的二膦氧化物的演示相反。改善的空穴传输导致改善的器件效率。

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