Electron-transporting layer effects on blue phosphorescent organic light-emitting diodes

Tzu-Chan Lin, Tien‐Lung Chiu
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Abstract

In this work, we demonstrated the electron-transporting layer (ETL) effects on device electroluminescence (EL) performance of blue phosphorescent organic light-emitting diodes (PhOLED). Three well known electron-transporting materials such as 3-(4-biphenyl-yl)-4-phenyl-5-(4-tert-butylphenyl)-1,2,4-triazole (TAZ), diphenyl-bis[4-(pyridin-3-yl)phenyl]silane (DPPS) and 1,3,5-tri( m-pyrid-3-yl-phenyl)benzene (TmPyPB) were employed as ETL inside a blue PhOLED. The material properties of these three ETL materials individually dominated the different location of carrier recombination and exciton formation inside device, especially carrier mobility. By investigating the EL performance of these three devices, one can be concluded that high carrier mobility ETL results to a low driving voltage, worse carrier confinement in the emitting layer, greater amount of leakage electrons. The great efficiency performance is dominated by the great carrier confinement in the emitting layer.
蓝色磷光有机发光二极管的电子传输层效应
在这项工作中,我们证明了电子传输层(ETL)对蓝色磷光有机发光二极管(PhOLED)器件电致发光(EL)性能的影响。采用3-(4-联苯基)-4-苯基-5-(4-叔丁基苯基)-1,2,4-三唑(TAZ)、二苯基-双[4-(吡啶-3-基)苯基]硅烷(DPPS)和1,3,5-三(m-吡啶-3-基)苯基)苯(TmPyPB)三种已知的电子传递材料作为ETL在蓝色PhOLED内。这三种ETL材料的材料性质分别决定了载流子复合和激子形成在器件内部的不同位置,尤其是载流子迁移率。通过研究这三种器件的电致发光性能,可以得出结论:高载流子迁移率的电致发光导致驱动电压低,发射层载流子约束差,漏电子量大。发光层中载流子约束的大小决定了其优异的效率性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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