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通过引入部分氧化的铝阴极增强纯蓝光量子点发光二极管的电子注入和激子限制

Enhanced Electron Injection and Exciton Confinement for Pure Blue Quantum-Dot Light-Emitting Diodes by Introducing Partially Oxidized Aluminum Cathode.

作者信息

Wang Zhibin, Cheng Tai, Wang Fuzhi, Bai Yiming, Bian Xingming, Zhang Bing, Hayat Tasawar, Alsaedi Ahmed, Tan Zhan'ao

机构信息

State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources, North China Electric Power University.

Department of Mathematics, Quaid-I-Azam University; NAAM Research Group, Faculty of Science, King Abdulaziz University.

出版信息

J Vis Exp. 2018 May 31(135):57260. doi: 10.3791/57260.

Abstract

Stable and efficient red (R), green (G), and blue (B) light sources based on solution-processed quantum dots (QDs) play important roles in next-generation displays and solid-state lighting technologies. The brightness and efficiency of blue QDs-based light-emitting diodes (LEDs) remain inferior to their red and green counterparts, due to the inherently unfavorable energy levels of different colors of light. To solve these problems, a device structure should be designed to balance the injection holes and electrons into the emissive QD layer. Herein, through a simple autoxidation strategy, pure blue QD-LEDs which are highly bright and efficient are demonstrated, with a structure of ITO/PEDOT:PSS/Poly-TPD/QDs/Al:Al2O3. The autoxidized Al:Al2O3 cathode can effectively balance the injected charges and enhance radiative recombination without introducing an additional electron transport layer (ETL). As a result, high color-saturated blue QD-LEDs are achieved with a maximum luminance over 13,000 cd m, and a maximum current efficiency of 1.15 cd A. The easily controlled autoxidation procedure paves the way for achieving high-performance blue QD-LEDs.

摘要

基于溶液处理量子点(QD)的稳定高效红(R)、绿(G)和蓝(B)光源在下一代显示器和固态照明技术中发挥着重要作用。由于不同颜色光固有的不利能级,基于蓝色量子点的发光二极管(LED)的亮度和效率仍低于红色和绿色量子点发光二极管。为了解决这些问题,应设计一种器件结构来平衡注入到发光量子点层中的空穴和电子。在此,通过一种简单的自氧化策略,展示了具有ITO/PEDOT:PSS/聚-TPD/量子点/Al:Al2O3结构的高亮度和高效率的纯蓝色量子点发光二极管。自氧化的Al:Al2O3阴极可以有效地平衡注入的电荷并增强辐射复合,而无需引入额外的电子传输层(ETL)。结果,实现了高色饱和度的蓝色量子点发光二极管,最大亮度超过13000 cd/m²,最大电流效率为1.15 cd/A。这种易于控制的自氧化过程为实现高性能蓝色量子点发光二极管铺平了道路。

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