首页> 外文会议>International Conference on Manipulation, Manufacturing and Measurement on the Nanoscale >Microlens array film fabricated by UV roll-to-roll nanoimprinting for enhancing out-coupling efficiency of organic light-emitting devices
【24h】

Microlens array film fabricated by UV roll-to-roll nanoimprinting for enhancing out-coupling efficiency of organic light-emitting devices

机译:MicroLens阵列膜由UV辊卷纳米压印制造,用于提高有机发光器件的外耦合效率

获取原文

摘要

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.
机译:在玻璃基板上引入了通过UV卷纳米压印光刻制造的微透镜阵列膜,以提高有机发光器件的外耦合效率。基于Monto-Carlo模型的基板中的微透镜抑制基板中的波引导损失和理论模型,以模拟增强效果。数值结果表明,椭圆形微透镜阵列可以将效率提高超过35%,并且沿正交方向的亮度密度分布可以通过10度来压缩。这种微透镜阵列模具是通过DMD基激光直接写入光刻和热回流方法的组合制造的,然后通过电铸用于将表面结构转移到镍板。通过UV卷到轧辊纳米压印方法将所得的模具包裹在辊子上,用于批量生产微透镜阵列膜。达到效率最大增加35%的这种微透镜阵列膜的OLED可以在实验上观察到定向外耦合现象。这种定向外耦合微透镜阵列阵列可用于OLED以增强发光强度效率并节省未来照明和显示应用的功耗。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号