Tian Wenya, Dou Long, Jin Zhong, Xiao Jinqing, Li Junhui
Appl Opt. 2020 Dec 10;59(35):11112-11122. doi: 10.1364/AO.412267.
A full-color display consisting of red and green photoluminescence cadmium-free quantum dots (QDs) as the color conversion material and excited by a 68×68 blue micro-LED flip chip array mounted on an active-matrix driving board was completed in this study. The QD photoresist (QDPR) lithography technology was reported in detail, and it has been proven to be a stable process route. The suitable thickness of 12±1µ of the QDPR and black matrix was proposed to reduce the light cross talk between different sub-pixels. The thickness of the common color filter of 1-2 µm was made successfully between the quantum dot film and the cover glass, which can greatly reduce the leakage of blue backlight and decrease the quantum dots excitation by the ambient light, as well as improve the color gamut and color purity of the display panel. In addition, the high red and green light conversion efficiency reaches up to 78.1% and 296.5%, respectively, and the screen display can reach 98.8% NTSC on the CIE 1931 chromaticity. Representative RGB monochromatic pictures were displayed successfully and ≤0.04 viewing angle deviation of the display was measured precisely.
本研究完成了一种全彩显示器,其由红色和绿色光致发光无镉量子点(QD)作为颜色转换材料,并由安装在有源矩阵驱动板上的68×68蓝色微型发光二极管倒装芯片阵列激发。详细报道了量子点光刻胶(QDPR)光刻技术,并且已证明其为稳定的工艺路线。提出了12±1µ的QDPR和黑矩阵的合适厚度,以减少不同子像素之间的光串扰。在量子点膜和盖板玻璃之间成功制作了1-2µm的普通彩色滤光片厚度,这可以大大减少蓝色背光源的泄漏,减少环境光对量子点的激发,同时提高显示面板的色域和色纯度。此外,高红光和绿光转换效率分别高达78.1%和296.5%,屏幕显示在CIE 1931色度图上可达到98.8% NTSC。成功显示了代表性的RGB单色图片,并精确测量了显示器≤0.04的视角偏差。