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Quantum Dot Film Patterning on a Trenched Glass Substrate for Defining Pixel Arrays of a Full-color Mini/Micro-LED Display

机译:沟槽玻璃基板上的量子点薄膜图案化,用于定义全色微型/微型LED显示器的像素阵列

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The major hurdle to the implementation of full-color mini/micro-LED display is the mass transfer of red-green-blue (RGB) LED chips, which leads to low yield and high cost of full-color mini/micro-LED display. To overcome this issue, an alternative emitting source of quantum dot (QD) color conversion film with monolithic excitation backlight is a feasible solution. This paper proposes an innovative approach to pattern the red and green QD films on a trenched glass substrate by optimized laser scribing, followed by subsequent trench filling and glasses adhesive bonding to form a full-color QD pixel array for color tuning. Full-color QD pixel array with pixel size 500x500 μm was achieved as passive color conversion layer for prototype demonstration of the full-color mini/micro LED display.
机译:实施全色微型/微型LED显示器的主要障碍是红绿蓝(RGB)LED芯片的大量转移,这导致全色微型/微型LED显示器的产量低且成本高。为了克服此问题,具有单片激发背光源的量子点(QD)色转换膜的替代发射源是一种可行的解决方案。本文提出了一种创新的方法,通过优化的激光刻划,在沟槽玻璃基板上对红色和绿色QD膜进行构图,随后进行沟槽填充和玻璃粘合剂粘合,以形成用于色彩调整的全色QD像素阵列。实现了像素尺寸为500x500μm的全色QD像素阵列,作为无源颜色转换层,用于全色mini / micro LED显示器的原型演示。

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