YYYY
MMM
Eco-friendly quantum-dot light-emitting diode display technologies: prospects and challenges
环保型量子点发光二极管显示技术:前景与挑战
環境に優しい量子点発光ダイオードディスプレイ技術:展望と課題
환경 친화적인 양자 점 발광 다이오드 디스플레이 기술: 전망과 도전
Tecnologías ecológicas de visualización de diodos emisores de luz de puntos cuánticos: perspectivas y desafíos
Technologies écologiques d'affichage à diodes émetteuses de lumière à points quantiques: perspectives et défis
Экологически чистые технологии дисплея квантовых светодиодов: перспективы и вызовы
Gao Peili 高佩丽 ¹, Li Chan 李婵 ², Zhou Hao 周浩 ², He Songhua 何颂华 ², Yin Zhen 殷震 ², Ng Kar Wei 吴嘉伟 ¹, Wang Shuangpeng 王双鹏 ¹
¹ Institute of Applied Physics and Materials Engineering, University of Macau, Taipa, Macau SAR 999078, China
中国 澳门 澳门大学应用物理及材料工程研究院
² School of Digital Media, Shenzhen Polytechnic University, Shenzhen 518055, China
中国 深圳 深圳信息职业技术学院 数字媒体学院
Opto-Electronic Science, 25 June 2025
Abstract

Eco-friendly quantum-dot light-emitting diodes (QLEDs), which employ colloidal quantum dots (QDs) such as InP, and ZnSe, stand out due to their low toxicity, color purity, and high efficiency. Currently, significant advancements have been made in the performance of cadmium-free QLEDs. However, several challenges persist in the industrialization of eco-friendly QLED displays.

For instance, (1) the poor performance, characterized by low photoluminescence quantum yield (PLQY), unstable ligand, and charge imbalance, cannot be effectively addressed with a solitary strategy; (2) the degradation mechanism, involving emission quenching, morphological inhomogeneity, and field-enhanced electron delocalization remains unclear; (3) the lack of techniques for color patterning, such as optical lithography and transfer printing.

Herein, we undertake a specific review of all technological breakthroughs that endeavor to tackle the above challenges associated with cadmium-free QLED displays. We begin by reviewing the evolution, architecture, and operational characteristics of eco-friendly QLEDs, highlighting the photoelectric properties of QDs, carrier transport layer stability, and device lifetime.

Subsequently, we focus our attention not only on the latest insights into device degradation mechanisms, particularly, but also on the remarkable technological progress in color patterning techniques. To conclude, we provide a synthesis of the promising prospects, current challenges, potential solutions, and emerging research trends for QLED displays.
Opto-Electronic Science_1
Opto-Electronic Science_2
Opto-Electronic Science_3
Opto-Electronic Science_4
Reviews and Discussions
https://www.hotpaper.io/index.html
Harmonic heterostructured pure Ti fabricated by laser powder bed fusion for excellent wear resistance via strength-plasticity synergy
Strong-confinement low-index-rib-loaded waveguide structure for etchless thin-film integrated photonics
Flicker minimization in power-saving displays enabled by measurement of difference in flexoelectric coefficients and displacement-current in positive dielectric anisotropy liquid crystals
Dual-frequency angular-multiplexed fringe projection profilometry with deep learning: breaking hardware limits for ultra-high-speed 3D imaging
Advances and new perspectives of optical systems and technologies for aerospace applications: a comprehensive review
Meta-lens digital image correlation
Non-volatile reconfigurable planar lightwave circuit splitter enabled by laser-directed Sb2S3 phase transitions
Progress in metalenses: from single to array
30 years of nanoimprint: development, momentum and prospects
Review for wireless communication technology based on digital encoding metasurfaces
Coulomb attraction driven spontaneous molecule-hotspot paring enables universal, fast, and large-scale uniform single-molecule Raman spectroscopy
Multiphoton intravital microscopy in small animals of long-term mitochondrial dynamics based on super‐resolution radial fluctuations



Previous Article                                Next Article
About
|
Contact
|
Copyright © Hot Paper