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具有37%外量子效率的磷光染料敏化量子点发光二极管

Phosphorescent-Dye-Sensitized Quantum-Dot Light-Emitting Diodes with 37% External Quantum Efficiency.

作者信息

Wang Yanping, Yang Yusen, Zhang Dingke, Zhang Tong, Xie Shiyi, Zhang Yu, Zhao Yong-Biao, Mi Xiaoyun, Liu Xiuling

机构信息

School of Materials Science and Engineering, Changchun University of Science and Technology, Changchun, 130022, P. R. China.

Chongqing Research Institute, Changchun University of Science and Technology, No. 618 Liangjiang Avenue, Longxing Town, Yubei District, Chongqing City, 401135, P. R. China.

出版信息

Adv Mater. 2023 Nov;35(45):e2306703. doi: 10.1002/adma.202306703. Epub 2023 Oct 3.

Abstract

Exciton harvesting is of paramount importance for quantum-dot light-emitting diodes (QLEDs). Direct exciton harvesting by the quantum dots (QDs) emitting layer suffers from poor hole injection due to the low conduction bands and valence bands of QDs, leading to unbalanced electron-hole injection and recombination. To address this issue, here, an exciton sensitizing approach is reported, where excitons form on a phosphorescent-dye-doped layer, which then transfer their energies to adjacent QDs layer for photon emission. Due to the very efficient exciton formation and energy-transfer processes, higher device performance can be achieved. To demonstrate the above strategy, red QLEDs with a phosphorescent dye, iridium (III) bis(2-methyldibenzo-[f,h]quinoxaline) (acetylacetonate), Ir(MDQ) (acac), doped hole-transporting layer are fabricated and studied. At a doping concentration of 10 wt%, the best device achieves record high current efficiency, power efficiency, and external quantum efficiency (EQE) of 37.3 cd A , 41 lm W , and 37%, respectively. Simultaneously, the efficiency roll-off characteristic is greatly improved, in that 35% EQE can be well retained at a high luminance level of 450 000 cd m . Moreover, the devices also exhibit good stability and reproducibility.

摘要

激子收集对于量子点发光二极管(QLED)至关重要。量子点(QD)发光层的直接激子收集由于量子点的低导带和价带而存在空穴注入不良的问题,导致电子 - 空穴注入和复合不平衡。为了解决这个问题,本文报道了一种激子敏化方法,其中激子在磷光染料掺杂层上形成,然后将其能量转移到相邻的量子点层以发射光子。由于非常高效的激子形成和能量转移过程,可以实现更高的器件性能。为了证明上述策略,制备并研究了具有磷光染料铱(III)双(2 - 甲基二苯并 - [f,h]喹喔啉)(乙酰丙酮),Ir(MDQ)(acac)掺杂的空穴传输层的红色QLED。在10 wt%的掺杂浓度下,最佳器件分别实现了创纪录的高电流效率、功率效率和外量子效率(EQE),分别为37.3 cd A、41 lm W和37%。同时,效率滚降特性得到了极大改善,即在450 000 cd m的高亮度水平下可以很好地保持35%的EQE。此外,这些器件还表现出良好的稳定性和可重复性。

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