首页> 外文期刊>Journal of nanoscience and nanotechnology >Finite-Difference Time-Domain Simulation of Fractal-Like Microlens Arrays for High Outcoupling Efficiency of Organic Light-Emitting Diodes
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Finite-Difference Time-Domain Simulation of Fractal-Like Microlens Arrays for High Outcoupling Efficiency of Organic Light-Emitting Diodes

机译:用于高耦合效率的分形微透镜阵列的有限差分时域模拟有机发光二极管的高耦合效率

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摘要

The outcoupling efficiencies (OCEs) of organic light-emitting diodes (OLEDs) were studied for a fractal-like two-dimensional structure consisting of three layers of semicircular microlens on a glass substrate using a finite-difference time-domain (FDTD) method. The OCE with only one semicircular microlens layer was 29.5%, 1.75 times larger than that of the basic OLED. Additional layers with smaller diameters on the first layer did not improve the OCE. The OCE remained constant or slightly decreased with the increase of the number of layers. Two possible origins of this result were suggested; first, the possibility that the escaped light enters the nearby microlens becomes higher with the introduction of an additional protruded layer; second, the Mie scattering effect becomes important with the decrease of the diameter of the semicircular microlens from 20 mu m to 0.8 mu m. An additional FDTD simulation was performed for the OLED with only one microlens array as a function of the diameter. The OCE decreased approximately monotonously with the decrease of the diameter from 20 mu m to 0.2 mu m. In particular, the OCE became lower than that of the basic OLED when the diameter decreased from 0.5 mu m to 0.2 mu m. This is consistent with the observation that smaller fractal-like structures on the large microlens array did not further enhance the OCE.
机译:研究了有机发光二极管(OLED)的外耦合效率(OLED),用于使用有限差差时域(FDTD)方法在玻璃基板上由三层半圆形微透镜组成的分形二维结构。只有一个半圆形微透镜层的OCE为29.5%,比基本OLED大的1.75倍。第一层上具有较小直径的附加层并未改善OCE。随着层数的增加,OCE保持恒定或略微降低。建议这一结果的两项可能的起源;首先,随着额外的突出层的引入,逃逸光进入附近微透镜的可能性变得更高;其次,MIE散射效果随着20μm至0.8μm的半圆形微透镜的直径而变得重要。对于仅作为直径的函数,仅针对OLED执行额外的FDTD模拟。随着直径从20μm至0.2μm的降低,OCE大致单调地减小。特别地,当直径从0.5μm至0.2μm降低时,OCE变得低于基本OLED的OCE。这与观察结果一致,即大型微透镜阵列上的较小分形结构没有进一步增强OCE。

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