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Simulation study on the optical structures for improving the outcoupling efficiency of organic light-emitting diodes

机译:用于提高有机发光二极管输出耦合效率的光学结构的仿真研究

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摘要

In this study, optical simulation was used to compare three optical structures that could be applied to the typical organic light-emitting diode to increase the outcoupling efficiency. These were spherical scattering particles (treated as Mie scatterers) embedded in the glass substrate, microlenses formed on the glass substrate, and a diffusing layer (DL) with a Gaussian scattering distribution function inserted between the indium tin oxide (ITO) and the glass substrate. It was found that the application of microlens array and that of scattering particles in the glass substrate exhibited similar enhancements in the outcoupling efficiency when the density and the refractive index of the scattering particles were optimized. The DL located at the interface between the glass and the ITO further enhanced the efficiency because it could further extract the trapped light in the waveguide mode. The appropriate combination of these three structures increased the outcoupling efficiency to about 42%, which is much greater than the typical values of 15-20% when there is no optical structure for light extraction.
机译:在这项研究中,使用光学仿真来比较可应用于典型有机发光二极管以提高输出耦合效率的三种光学结构。它们是嵌入玻璃基板中的球形散射粒子(作为米氏散射体处理),在玻璃基板上形成的微透镜以及在氧化铟锡(ITO)和玻璃基板之间插入具有高斯散射分布功能的扩散层(DL)。 。已经发现,当优化散射颗粒的密度和折射率时,微透镜阵列的应用和散射颗粒在玻璃基板中的应用在外耦合效率上表现出相似的增强。位于玻璃和ITO之间界面的DL进一步提高了效率,因为它可以在波导模式下进一步提取捕获的光。这三种结构的适当组合将输出耦合效率提高到约42%,这比没有光学结构用于光提取时的典型值15-20%大得多。

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