65‐3:激子和极化子控制激子形成共宿主有机发光二极管器件降解的动力学途径

Kyung Hyung Lee, Jae‐Min Kim, Jun Yeob Lee
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引用次数: 0

摘要

具有热激活延迟荧光特性的异构体形成共主体已被用于实现磷光有机发光二极管(PHOLEDs)的长工作寿命和高效率。本文通过瞬态电致发光(EL)的数值模拟,从极化子和激子行为的角度全面研究了器件中的本征极化子动力学。进一步研究了双分子相互作用产生的降解机理,考虑了亮度降低和电压上升的影响。通过数值模拟,可以对极化子、激子和复合系数进行量化。在此基础上,揭示了抑制激子-极化子相互作用对于提高激子-极化子形成共主体基phoeds的长使用寿命至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
65‐3: Kinetic Pathways of Excitons and Polarons Governing Device Degradation in Exciplex‐Forming Co‐Host‐Based Organic Light‐Emitting Diodes
The exciplex‐forming cohost with thermally activated delayed fluorescence characteristic has been used for achieving a long operational lifetime and high efficiency in phosphorescent organic light‐emitting diodes (PHOLEDs). In this work, the intrinsic polaron dynamics in the device are comprehensively investigated in terms of the polaron and exciton behaviors through the numerical simulation with transient electroluminescence (EL). Furthermore, the degradation mechanism generated by bimolecular interaction is investigated by considering the reduction of the luminance and voltage rising. As a result, the polaron, exciton, and recombination coefficient could be quantified via numerical simulation. Based on this, it is revealed that suppressing the exciton‐polaron interaction is crucial to improving the long operational lifetime in exciplex‐forming cohost based PHOLEDs.
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