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色彩革命:量子点发光二极管显示技术的前景与挑战

Color Revolution: Prospects and Challenges of Quantum-Dot Light-Emitting Diode Display Technologies.

作者信息

Chen Zinan, Li Haotao, Yuan Cuixia, Gao Peili, Su Qiang, Chen Shuming

机构信息

Department of Electrical and Electronic Engineering, Southern University of Science and Technology, Shenzhen, 518055, P. R. China.

出版信息

Small Methods. 2024 Feb;8(2):e2300359. doi: 10.1002/smtd.202300359. Epub 2023 Jun 25.

Abstract

Light-emitting diodes (LEDs) based on colloidal quantum-dots (QDs) such as CdSe, InP, and ZnSeTe feature a unique advantage of narrow emission linewidth of ≈20 nm, which can produce highly accurate colors, making them a highly promising technology for the realization of displays with Rec. 2020 color gamut. With the rapid development in the past decades, the performances of red and green QLEDs have been remarkably improved, and their efficiency and lifetime can almost meet industrial requirements. However, the industrialization of QLED displays still faces many challenges; for example, (1) the device mechanisms including the charge injection/transport/leakage, exciton quenching, and device degradation are still unclear, which fundamentally limit QLED performance improvement; (2) the blue performances including the efficiency, chromaticity, and stability are relatively low, which are still far from the requirements of practical applications; (3) the color patterning processes including the ink-jet printing, transfer printing, and photolithography are still immature, which restrict the manufacturing of high resolution full-color QLED displays. Here, the recent advancements attempting to address the above challenges of QLED displays are specifically reviewed. After a brief overview of QLED development history, device structure/principle, and performances, the main focus is to investigate the recent discoveries on device mechanisms with an emphasis on device degradation. Then recent progress is introduced in blue QLEDs and color patterning. Finally, the opportunities, challenges, solutions, and future research directions of QLED displays are summarized.

摘要

基于胶体量子点(QDs)(如CdSe、InP和ZnSeTe)的发光二极管(LED)具有独特优势,其发射线宽窄至约20nm,可产生高度精确的颜色,使其成为实现符合Rec. 2020色域显示器的极具前景的技术。在过去几十年的快速发展中,红色和绿色量子点发光二极管(QLED)的性能得到了显著提升,其效率和寿命几乎能满足工业要求。然而,QLED显示器的产业化仍面临诸多挑战;例如,(1)包括电荷注入/传输/泄漏、激子猝灭和器件退化在内的器件机制仍不明确,这从根本上限制了QLED性能的提升;(2)蓝色性能,包括效率、色度和稳定性相对较低,仍远未达到实际应用的要求;(3)包括喷墨打印、转印和光刻在内的彩色图案化工艺仍不成熟,这限制了高分辨率全彩QLED显示器的制造。在此,对近期试图解决QLED显示器上述挑战的进展进行了专门综述。在简要概述QLED的发展历史、器件结构/原理和性能之后,主要重点是研究器件机制方面的最新发现,重点是器件退化。然后介绍了蓝色QLED和彩色图案化方面的最新进展。最后,总结了QLED显示器的机遇、挑战、解决方案和未来研究方向。

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