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Influence of cavity thickness and emitter orientation on the efficiency roll-off of phosphorescent organic light-emitting diodes

机译:腔体厚度和发射极方向对磷光有机发光二极管效率下降的影响

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摘要

This article describes the first systematic investigation of how the efficiency roll-off in organic light-emitting diodes (OLEDs) is influenced by the position and orientation of the emitter molecules within the OLED cavity. The efficiency roll-off is investigated for two OLED stacks containing either the phosphorescent emitter Ir(MDQ)2(acac) or Ir(ppy)3 by varying the distance between emitter and metal cathode; a strong influence of emitter position and orientation on roll-off is observed. The measurements are modeled by triplet-triplet-annihilation (TTA) theory yielding the critical current density and the TTA rate constant. It is found that Ir(MDQ)2(acac) shows the lowest roll-off when the emitter is located in the first optical maximum of the electromagnetic field, whereas the roll-off of the Ir(ppy)3 stack is lowest when the emitter is positioned closer to the metal cathode. Measurement and modeling of time-resolved electroluminescence show that the different roll-off behavior is due to the different orientation and the corresponding change of the decay rate of the emissive dipoles of Ir(MDQ)2(acac) and Ir(ppy)3. Finally, design principles are developed for optimal high-brightness performance by modeling the roll-off as a function of emitter-cathode distance, emissive dipole orientation, and radiative efficiency.
机译:本文介绍了有关有机发光二极管(OLED)的效率下降如何受到OLED腔内发射器分子的位置和方向的影响的首次系统研究。通过改变发射极和金属阴极之间的距离,研究了两个包含磷光发射极Ir(MDQ)2(acac)或Ir(ppy)3的OLED堆栈的效率下降。观察到发射器位置和方向对滚降的强烈影响。通过三重态-三重态an灭(TTA)理论对测量进行建模,得出临界电流密度和TTA速率常数。发现当发射极位于电磁场的第一光学最大值时,Ir(MDQ)2(acac)的滚降最低,而当发射极位于电磁场的第一光学最大值时,Ir(ppy)3堆的滚降最低发射极靠近金属阴极。时间分辨电致发光的测量和建模表明,不同的滚降行为是由于Ir(MDQ)2(acac)和Ir(ppy)3的发射偶极子的方向不同以及相应的衰减速率变化引起的。最后,通过将衰减模拟为发射极-阴极距离,发射偶极子定向和辐射效率的函数,开发出了最佳高亮度性能的设计原理。

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