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Fabrication of Light Extraction Efficiency of Organic Light-Emitting Diodes with 3D Aspherical Microlens by Using Dry Etching Process

机译:用干蚀刻工艺制造三维球面微透镜的有机发光二极管的光提取效率

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摘要

organic light-emitting diode (OLED) can enable a greater artificial contrast ratio and viewing angle compared to liquid crystal display (LCD) because OLED pixels directly emit light. There is a shortcoming that the internal quantum efficiency can reach values close to 100%, but about 80% light disperses because of the difference among the refractive indices of the substrate, anode, indium tin oxide (ITO) film, and air. In this paper, three dimensions aspherical microlens arrays (3D A-MLAs) with substrate modifications are developed to simulate the optical luminous field by using FRED software. This study modified parameters of 3D A-MLAs such as the diameter, fill-factor, aspect ratio, dry etching parameters, and electroforming rates of microlens to improve the extraction efficiency of the OLED. In dry etching, not only the aspect ratio with better extraction rate can be obtained by reactive ion etching (RIE) dry etching, but also an undercutting phenomenon can be avoided. The dimensions of 3D A-MLAs can be accurately controlled in the electroforming process used to make a nickel-cobalt (Ni-Co) metal mold to achieve the designed dimensions. According to the measured results, the average luminance efficacy of the OLEDs with 3D A-MLAs can be enhanced.
机译:与液晶显示器(LCD)相比,有机发光二极管(OLED)可以使得更大的人工对比度和观察角度,因为OLED像素直接发光。存在缺点的是,内部量子效率可以达到接近100%的值,但大约80%的光分散,因为基材的折射率,阳极,氧化铟锡(ITO)膜和空气之间的差异。在本文中,开发了三维具有基板修改的非球面微透镜阵列(3D A-MLA)以通过使用FRED软件来模拟光学发光场。该研究改进了3D A-MLA的参数,例如直径,填充因子,纵横比,干蚀刻参数和微透镜的电铸率,以提高OLED的提取效率。在干蚀刻中,不仅可以通过反应离子蚀刻(RIE)干法蚀刻而获得更好的提取率的纵横比,而且可以避免底切的现象。可以在用于制备镍 - 钴(Ni-Co)金属模具以实现设计尺寸的电铸过程中精确地控制3D A-MLA的尺寸。根据测量结果,可以增强具有3D A-MLA的OLED的平均亮度效果。

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