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用于颜色转换微型发光二极管显示应用的量子点图案化技术。

Patterning technologies of quantum dots for color-conversion micro-LED display applications.

作者信息

Wang Yuhui, Luo Yunshu, Kong Xuemin, Wu Tingzhu, Lin Yue, Chen Zhong, Wang Shuli

机构信息

Fujian Engineering Research Center for Solid-State Lighting, Department of Electronic Science, School of Electronic Science and Engineering, Xiamen University, Xiamen, 361102 Fujian, China.

Innovation Laboratory for Sciences and Technologies of Energy Materials of Fujian Province (IKKEM), Xiamen, 361102 Fujian, China.

出版信息

Nanoscale. 2025 Jan 23;17(4):1764-1789. doi: 10.1039/d4nr03925d.

Abstract

Quantum dot (QD) materials and their patterning technologies play a pivotal role in the full colorization of next-generation Micro-LED display technology. This article reviews the latest development in QD materials, including II-VI group, III-V group, and perovskite QDs, along with the state of the art in optimizing QD performance through techniques such as ligand engineering, surface coating, and core-shell structure construction. Additionally, it comprehensively covers the progress in QD patterning methods, such as inkjet printing, photolithography, electrophoretic deposition, transfer printing, microfluidics, and micropore filling method, and emphasizes their crucial role in achieving high precision, density, and uniformity in QD deposition. This review delineates the impact of these technologies on the luminance of QD color-conversion layers and devices, providing a detailed understanding of their application in enhancing Micro-LED display technology. Finally, it explores future research directions, offering valuable insights and references for the continued innovation of full-color Micro-LED displays, thereby providing a comprehensive overview of the potential and scope of QD materials and patterning technologies in this field.

摘要

量子点(QD)材料及其图案化技术在下一代微发光二极管(Micro-LED)显示技术的全彩化中起着关键作用。本文综述了量子点材料的最新进展,包括II-VI族、III-V族和钙钛矿量子点,以及通过配体工程、表面涂层和核壳结构构建等技术优化量子点性能的现状。此外,它全面涵盖了量子点图案化方法的进展,如喷墨打印、光刻、电泳沉积、转移印刷、微流体和微孔填充法,并强调了它们在实现量子点沉积的高精度、高密度和均匀性方面的关键作用。本综述阐述了这些技术对量子点颜色转换层和器件亮度的影响,详细介绍了它们在增强微发光二极管显示技术中的应用。最后,探讨了未来的研究方向,为全彩微发光二极管显示器的持续创新提供了有价值的见解和参考,从而全面概述了量子点材料和图案化技术在该领域的潜力和范围。

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