利用紫外卷对卷纳米压印技术制备微透镜阵列薄膜,提高有机发光器件的外耦合效率

S. Shen, Fang Zhou, D. Pu, G. Wei, Yun Zhou
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引用次数: 2

摘要

为了提高有机发光器件的外耦合效率,在玻璃基板上引入了紫外卷对卷纳米压印技术制备的微透镜阵列薄膜。微透镜抑制了基片中的导波损耗,并建立了基于蒙特卡罗模型的理论模型来模拟这种增强效果。数值计算结果表明,椭球微透镜阵列的效率提高了35%以上,且正交方向的光密度分布可压缩10度。采用基于dmd的激光直写光刻和热回流相结合的方法制备微透镜阵列模具,然后电铸将表面结构转移到镍板上。将得到的模具包裹在滚轮上,采用UV卷对卷纳米压印工艺批量生产微透镜阵列薄膜。应用该微透镜阵列薄膜后,OLED的效率最高可提高35%,并在实验中观察到定向外耦合现象。这种定向外耦合微透镜阵列薄膜可用于OLED,提高发光强度效率,节省功耗,用于未来的照明和显示应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microlens array film fabricated by UV roll-to-roll nanoimprinting for enhancing out-coupling efficiency of organic light-emitting devices
Microlens arrays film fabricated by UV roll-to-roll nanoimprinting lithography is introduced on glass substrate to improve the out-coupling efficiency of organic light-emitting devices. The microlenses suppress wave guiding loss in the substrate and a theoretical model, based on Monto-Carlo model, is developed to simulate the enhancement effects. The numerical results show that ellipsoidal-like microlens array can increase the efficiency by a factor of more than 35% and the luminance density distribution along the orthogonal directions can be compressed by 10 degree. Such a microlens array mold is fabricated by a combination of DMD-based laser direct writing lithography and thermal reflow method, followed by electroforming for transferring the surface structure to a nickel plate. The obtained mold is wrapped on a roller for the mass production of microlens array film by UV roll-to-roll nanoimprinting process. OLED attached with such microlens array film with a maximum increase of 35% in efficiency is achieved and directional out-coupling phenomenon can be observed experimentally. Such a directional out-coupling microlens array film can be used to OLED to enhance the luminous intensity efficiency and save power consumption for future lighting and display application.
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