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Quantitative Analysis of the Efficiency of OLEDs

机译:OLED效率的定量分析

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We present a comprehensive model for the quantitative analysis of factors influencing the efficiency of organic light-emitting diodes (OLEDs) as a function of the current density. The model takes into account the contribution made by the charge carrier imbalance, quenching processes, and optical design loss of the device arising from various optical effects including the cavity structure, location and profile of the excitons, effective radiative quantum efficiency, and out-coupling efficiency. Quantitative analysis of the efficiency can be performed with an optical simulation using material parameters and experimental measurements of the exciton profile in the emission layer and the lifetime of the exciton as a function of the current density. This method was applied to three phosphorescent OLEDs based on a single host, mixed host, and exciplex-forming cohost. The three factors (charge carrier imbalance, quenching processes, and optical design loss) were influential in different ways, depending on the device. The proposed model can potentially be used to optimize OLED configurations on the basis of an analysis of the underlying physical processes.
机译:我们提出了一个综合模型,用于定量分析影响有机发光二极管(OLED)效率与电流密度的函数的因素。该模型考虑了电荷载流子不平衡,淬灭过程以及器件的光学设计损耗所造成的影响,这些损耗是由各种光学效应引起的,这些效应包括腔结构,激子的位置和轮廓,有效的辐射量子效率以及输出耦合。效率。效率的定量分析可以通过光学模拟进行,该光学模拟使用材料参数和发射层中激子轮廓的实验测量以及激子寿命与电流密度的函数关系。该方法已应用于基于单个主体,混合主体和形成激基复合物的三种主体的三种磷光OLED。这三个因素(电荷载流子不平衡,淬灭过程和光学设计损失)以不同的方式产生影响,具体取决于设备。所提出的模型可以潜在地基于对基础物理过程的分析来优化OLED配置。

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