色域
量子点
背光
光电子学
光刻
材料科学
像素
彩色滤光片阵列
RGB颜色模型
色空间
光学
彩色凝胶
显色指数
纳米技术
计算机科学
液晶显示器
图层(电子)
发光二极管
物理
人工智能
图像(数学)
薄膜晶体管
作者
Yen‐Hsiang Fang,Wei-Hung Kuo,Haotian Shen,Peiwen Yu,Yen‐Hsiang Fang,Chien‐Chung Lin
标识
DOI:10.35848/1347-4065/abba0f
摘要
The development of a full-color micro-display at the Industrial Technology Research Institute (ITRI) was reviewed in this study. The blue micro-display with 960 × 540 pixel arrays and 1984 PPI resolution is demonstrated on a CMOS active matrix addressing circuit. Different methods of fabricating such a micro-panel are developed to overcome the limitation in mass transfer. For the device size ranging from 5–100 micrometers, low-current external quantum efficiency of 10%–14% can be obtained. To achieve a full-color scheme, we adapt color-conversion layer design and use colloidal quantum dots as the illuminating material. A full-color array on a transparent substrate of 170 PPI resolution was demonstrated with a large-area blue LED backlight. The red and green pixels were fabricated by a photolithography process and had a size of 30 μm. The FWHM of 21 and 28 nm and the quantum yield of 28% and 41% for the green and red pixels, respectively, were measured by a 2D spectroradiometer. With superior color provided by quantum dots, it shows a wide color gamut that can fill 87% of Rec. 2020 color space.
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