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Enhanced light out-coupling from surface plasmonic loss minimized transparent organic light-emitting diodes

机译:从表面等离子体损耗的增强光外耦合最小化透明有机发光二极管

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We report extremely high light out-coupling efficiency from a transparent organic light-emitting diode (OLED) integrated with microstructures on both sides of the device.[1] The OLED having a metal free structure offers dramatically reduced surface plasmonic loss and absorption loss. To extract the confined light inside the device, a high refractive index light extraction pattern was directly fabricated on the top side transparent conducting oxide electrode using a simple evaporation method, and a micro lens array sheet was simultaneously attached on the bottom side of the glass substrate. As a result, the external quantum efficiency of the device increased from 18.2% to 47.3% by using the microstructures, and was additionally enhanced to 62.9% by attaching an index-matched hemisphere lens instead of the micro lens array on the glass side in order to reduce additional light guiding loss inside of the device. These values showed very good agreement with the simulation performed by a combination of the dipole model and a 3-dimensional geometrical simulation.
机译:我们报告了与器件两侧的微结构集成的透明有机发光二极管(OLED)的极高的光外耦合效率。[1]具有金属结构的OLED显着降低了表面等离子体损失和吸收损失。为了在装置内部提取限制光,使用简单的蒸发方法直接在顶侧透明导电电极上直接制造高折射率光提取图案,并且将微透镜阵列片同时连接在玻璃基板的底侧上。结果,通过使用微观结构,该装置的外部量子效率从18.2%增加到47.3%,通过在玻璃侧上附着指数匹配的半球镜头而另外增强至62.9%减少设备内部的额外光导损失。这些值与通过偶极模型和三维几何模拟的组合执行的模拟非常好。

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