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显示技术中带有量子点的微型发光二极管。

Micro-light-emitting diodes with quantum dots in display technology.

作者信息

Liu Zhaojun, Lin Chun-Ho, Hyun Byung-Ryool, Sher Chin-Wei, Lv Zhijian, Luo Bingqing, Jiang Fulong, Wu Tom, Ho Chih-Hsiang, Kuo Hao-Chung, He Jr-Hau

机构信息

1Department of Electrical and Electronic Engineering, Southern University of Science and Technology, Shenzhen, China.

2School of Materials Science and Engineering, University of New South Wales (UNSW), 2052 Sydney, NSW Australia.

出版信息

Light Sci Appl. 2020 May 11;9:83. doi: 10.1038/s41377-020-0268-1. eCollection 2020.

Abstract

Micro-light-emitting diodes (μ-LEDs) are regarded as the cornerstone of next-generation display technology to meet the personalised demands of advanced applications, such as mobile phones, wearable watches, virtual/augmented reality, micro-projectors and ultrahigh-definition TVs. However, as the LED chip size shrinks to below 20 μm, conventional phosphor colour conversion cannot present sufficient luminance and yield to support high-resolution displays due to the low absorption cross-section. The emergence of quantum dot (QD) materials is expected to fill this gap due to their remarkable photoluminescence, narrow bandwidth emission, colour tuneability, high quantum yield and nanoscale size, providing a powerful full-colour solution for μ-LED displays. Here, we comprehensively review the latest progress concerning the implementation of μ-LEDs and QDs in display technology, including μ-LED design and fabrication, large-scale μ-LED transfer and QD full-colour strategy. Outlooks on QD stability, patterning and deposition and challenges of μ-LED displays are also provided. Finally, we discuss the advanced applications of QD-based μ-LED displays, showing the bright future of this technology.

摘要

微发光二极管(μ-LED)被视为满足诸如手机、智能手表、虚拟现实/增强现实、微型投影仪和超高清电视等先进应用个性化需求的下一代显示技术的基石。然而,随着LED芯片尺寸缩小到20μm以下,由于吸收截面低,传统的磷光体颜色转换无法提供足够的亮度和产量来支持高分辨率显示。量子点(QD)材料因其卓越的光致发光、窄带宽发射、颜色可调性、高量子产率和纳米级尺寸而有望填补这一空白,为μ-LED显示器提供强大的全彩解决方案。在此,我们全面回顾了μ-LED和量子点在显示技术应用方面的最新进展,包括μ-LED的设计与制造、大规模μ-LED转移以及量子点全彩策略。还展望了量子点的稳定性、图案化和沉积以及μ-LED显示器面临的挑战。最后,我们讨论了基于量子点的μ-LED显示器的先进应用,展示了这项技术的光明前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d21/7214519/981a840f6015/41377_2020_268_Fig1_HTML.jpg

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