基于梯度折射率衬底的白光oled效率的提高

Chih‐Hao Chang, Tzu-Fang Chang, Yu-Jhong Lo, Yi-Hua Liang, Yingpeng Wu, Hsin-hua Chang
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引用次数: 1

摘要

在照明应用中,白色有机发光器件(WOLEDs)必须在更高的偏置下工作,以确保充足的通量。然而,高压工作电压往往导致性能差和有限的设备寿命。这可以通过改变oled的固有光学特性来解决。本研究提出了一种梯度折射率(GRIN)衬底来调节光波波导模式和辐射模式的比例。将二氧化钛(TiO2)纳米颗粒(NPs)嵌入ITO和玻璃之间,形成内部光提取结构(IES)。TiO2的高折射率对于提高光刻胶薄膜的折射率,从而减少界面间的总内反射是必不可少的。此外,用二氧化硅NPs混合聚二甲基硅氧烷形成外光萃取结构(EES)。调整IES和EES的折射率,形成GRIN衬底。与控制装置相比,这种复杂的衬底产生了1.6倍的效率提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving the efficiency of white OLEDs based on a gradient refractive index substrate
For use in lighting applications, white organic light-emitting devices (WOLEDs) must operate at higher biases to ensure an ample flux. However, stressed operation voltages often result in poor performance and limited device lifetime. This could be addressed by modifying the inherent optical properties of OLEDs. This study proposes a gradient refractive index (GRIN) substrate to adjust the ratio of the light-waveguided modes as well as the radiation mode. An embedded nanocomposite film consisting of titanium dioxide (TiO2) nanoparticles (NPs) was inserted between ITO and glass to create an internal light-extraction structure (IES). The high refractive index of TiO2 is essential for increasing the refractive index of the photoresist film and thus diminishing the total internal reflection between the interfaces. In addition, the silicon dioxide NPs mixed polydimethylsiloxane was used to form an external light-extraction structure (EES). The refractive indices of the IES and EES were adjusted to form a GRIN substrate. Compared with a control device, this sophisticated substrate produced a 1.6 fold efficiency improvement.
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