改进蚀刻工艺制备OLED非球面微透镜

K.H. Liu, M.F. Chen, Y. Chen, Y. Hwang, C. Pan, S. Shen, M. Chang, W. Huang, W.C. Li
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引用次数: 2

摘要

采用光刻法(Lithographie Galvanoformung Abformung)与蚀刻相结合的工艺制备非球面微透镜阵列(a - mla)光学薄膜,提高了有机发光二极管(OLED)的提取效率。目前的OLED由于其全内反射,提取效率不高,而且由于提取效率低,亮度也较低。如何提高萃取效率是一个值得探讨的问题。本研究分析了微透镜直径、干蚀刻参数和电铸速率等a - mlas的制造和设计参数。实验结果表明,经热回流和干刻蚀处理后,直径的变化约为5%。电铸工艺是在复制PDMS(聚二甲基硅氧烷)模具称为二次模具后,制作金属模具作为第一模具。此外,它对光刻胶表面现有缺陷的细化也有额外的作用。用A-MLAs测量光学薄膜的亮度数据表明,oled的亮度比普通球微透镜阵列的亮度有更大的提高。
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Fabrication of an Aspherical Microlens for OLED with Modified Etching Process
Study on using a process which was combined LIGA (Lithographie Galvanoformung Abformung) with etching to manufacture an optical film of an aspherical microlens array (A-MLA), which can improve the extraction efficiency of an OLED (Organic Light-Emitting Diode). The extraction efficiency of a current OLED is not high due to its total internal reflection, and the luminance is also lower because of the low extraction efficiency. How to increase the extraction efficiency is a valuable topic to discuss. This study analyzes the manufacturing and design parameters of A-MLAs such as diameter of a microlens, dry etching parameters and electroforming rates. The experimental results indicate that the variation of the diameter is about 5% after the thermal reflow and dry etching process. Electroforming process is used to make a metal mold as the first mold after PDMS (Polydimethylsiloxane) mold is replicated called the secondary mold. In addition, it has an additional effect to refine the existing defects on photoresist surface. From the measured data of the luminance of the optical film with A-MLAs, they show that the luminance of OLEDs is enhanced more than that of common spherical-microlens array.
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