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用于稳定高效量子点发光二极管的掺镁氧化镍空穴注入层

Mg-Incorporated Nickel Oxide Hole Injection Layer for Stable and Efficient Quantum Dot Light-Emitting Diodes.

作者信息

Wang Meng-Wei, Ding Ting, Song Yin-Man, Liu Hang, Jiang Jing, Gao Pei-Li, Ng Kar Wei, Wang Shuang-Peng

机构信息

Institute of Applied Physics and Materials Engineering, University of Macau, Taipa, Macao SAR 999078, China.

出版信息

J Phys Chem Lett. 2025 Sep 11;16(36):9242-9248. doi: 10.1021/acs.jpclett.5c02298. Epub 2025 Aug 28.

Abstract

High-quality hole injection layers (HILs) are essential for efficient and stable quantum dot light-emitting diodes (QLEDs). While NiO is a stable alternative to the poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) HIL, its low hole injection limits its practical application. This work enhances NiO hole injection efficiency by combining Mg alloying to deepen work function (5.49 eV vs 5.20 eV) with O treatment to boost conductivity while suppressing traps. Using sol-gel synthesized Mg-alloyed NiO nanoparticles followed by O treatment via atomic layer deposition, the resulting QLEDs achieve peak efficiencies of 17.85 cd A and 11.23 lm W, representing 54% and 171% improvements over NiO-based QLEDs (11.56 cd A, 4.15 lm W). Operational stability significantly improves, with a lifetime of 272 h ( = 1000 cd m), over 2.2-fold that of NiO-based QLEDs (84 h). This methodology provides a viable pathway to develop a NiO HIL for advancing stable and high-efficiency QLEDs.

摘要

高质量的空穴注入层(HILs)对于高效稳定的量子点发光二极管(QLEDs)至关重要。虽然氧化镍(NiO)是聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)空穴注入层的一种稳定替代材料,但其较低的空穴注入能力限制了其实际应用。这项工作通过将镁合金化以提高功函数(5.49电子伏特对5.20电子伏特)与氧处理相结合来提高氧化镍的空穴注入效率,氧处理在抑制陷阱的同时提高了导电性。通过溶胶-凝胶法合成镁合金化的氧化镍纳米颗粒,随后通过原子层沉积进行氧处理,由此制备的量子点发光二极管实现了17.85坎德拉每安培和11.23流明每瓦特的峰值效率,分别比基于氧化镍的量子点发光二极管(11.56坎德拉每安培,4.15流明每瓦特)提高了54%和171%。器件的工作稳定性显著提高,在1000坎德拉每平方米的亮度下寿命为272小时,是基于氧化镍的量子点发光二极管(84小时)的2.2倍多。这种方法为开发用于推进稳定高效量子点发光二极管的氧化镍空穴注入层提供了一条可行的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/842d/12434719/a8a5209737fa/jz5c02298_0001.jpg

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