论文标题
高效有机发光二极管的光偶联结构的参数优化
Parameter Optimization of Light Outcoupling Structures for High-Efficiency Organic Light-Emitting Diodes
论文作者
论文摘要
有机发光二极管(OLEDS)成功地进入了展示市场,并继续对许多其他应用具有吸引力。由于最先进的OLED可以达到几乎100%的内部量子效率(IQE),因此轻度耦合仍然是要旋转的主要螺钉之一。没有发现尚未发现卓越的超耦合结构强调的事实,需要进一步的调查来了解其前景。在本文中,我们使用二维二氧化钛(2D Tio $ _2 $)块阵列作为内部光耦合结构的模型,并研究其几何参数对实现OLEDS最高外部量子效率(EQE)的影响。通过散点图的视觉辅助评估了多变量问题,这使我们能够提出最佳的周期范围并挡宽度比率。在内部和外部结构中,达到的最高均衡器为45.2%。这项工作有助于对理想光的高度预测超过未来的结构。
Organic light-emitting diodes (OLEDs) have successfully entered the display market and continue to be attractive for many other applications. As state-of-the-art OLEDs can reach an internal quantum efficiency (IQE) of almost 100 %, light outcoupling remains one of the major screws left to be turned. The fact that no superior outcoupling structure has been found underlines that further investigations are needed to understand their prospect. In this paper, we use two-dimensional titanium dioxide (2D TiO$_2$) block arrays as a model of an internal light outcoupling structure and investigate the influence of its geometrical parameters on achieving the highest external quantum efficiency (EQE) for OLEDs. The multivariable problem is evaluated with the visual assistance of scatter plots, which enables us to propose an optimal period range and block width-to-distance ratio. The highest EQE achieved is 45.2 % with internal and external structures. This work contributes to the highly desired prediction of ideal light outcoupling structures in the future.