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◆ ACS Photonics2025-12-02· Quantum dot

Boosting the Efficiency of Pure-Blue Quantum Dot Light-Emitting Diodes via a Dual-Target Treatment Strategy

Song Cao, Guangmei Zhai, Jiahao Chen, Yanlin Wang, Kai Jin, Chunyan Yu, Wei Jia, Hailiang Dong, Yanqin Miao, Hua Wang, Bingshe Xu

原始摘要(英文原文)· Original abstract
Blue quantum dot light-emitting diodes (QLEDs), particularly those emitting pure-blue light in the wavelength range of 450–465 nm, still lag behind their red and green counterparts in terms of efficiency and luminance. In this work, a facile and effective LiCl dual-target treatment strategy, simultaneously engineering both the quantum dot (QD) emissive layer and the hole injection layer (HIL), is proposed for fabricating highly efficient and high-brightness pure-blue QLEDs. The strategy not only optimizes QD surface chemistry and energy level alignment with charge transport layers while mitigating fluorescence quenching at the QD/electron transport layer interface, but also improves the conductivity, light transmittance, and hole injection efficiency of the HIL. The fabricated pure-blue QLED device with the LiCl dual-target treatment (peak wavelength: 461 nm; emission line width: 19 nm) exhibits a maximum luminance of 27,210 cd/m 2 and a peak external quantum efficiency of 23.44%, appreciably outperforming the untreated devices and those subjected to single LiCl treatments. To the best of our knowledge, the device surpasses the current state-of-the-art cadmium-based pure-blue QLEDs in terms of efficiency. The feasible fabrication strategy for high-performance pure-blue QLEDs and the mechanistic insights presented herein may advance QD display technologies.
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Boosting the Efficiency of Pure-Blue Quantum Dot Light-Emitting Diodes via a Dual-Target Treatment Strategy — 科研速览 Science Skim