Luo Xiao, He Siyu, Chen Desui, Sun Guolong, Zeng Jiejun, Zhu Xitong, Jin Wangxiao, Lu Xiuyuan, Hao Yanlei, Jin Yizheng
State Key Laboratory of Silicon and Advanced Semiconductor Materials, Key Laboratory of Excited-State Materials of Zhejiang Province, Department of Chemistry, Zhejiang University, Hangzhou, Zhejiang 310027, People's Republic of China.
State Key Laboratory of Silicon and Advanced Semiconductor Materials, School of Material Science and Engineering, Zhejiang University, Hangzhou, Zhejiang 310027, People's Republic of China.
J Phys Chem Lett. 2024 Jul 4;15(26):6722-6727. doi: 10.1021/acs.jpclett.4c01594. Epub 2024 Jun 20.
Quantum dot light-emitting diodes (QLEDs) are promising electroluminescent devices for next-generation display and solid-state lighting technologies. Achieving shelf-stable and high-performance QLEDs is crucial for their practical applications. However, the successful demonstration of shelf-stable QLEDs with high efficiencies is limited to red devices. Here, we developed a solution-based amine ligand exchange strategy to passivate the surfaces of optical ZnO (O-ZnO) nanocrystals, leading to suppressed exciton quenching at the green and blue QD/oxide interface. Furthermore, we designed new bilayered oxide electron-transporting layers consisting of amine-modified O-ZnO/conductive ZnO. This design simultaneously offers suppressed interfacial exciton quenching and sufficient electron transport in the green and blue QLEDs, resulting in shelf-stable green and blue devices with high efficiencies. Our devices exhibit neglectable changes in external quantum efficiencies (maximum external quantum efficiencies of 22.4% for green and 14.3% for blue) after storage for 270 days. Our work represents a step forward in the practical applications of QLED technology.
量子点发光二极管(QLED)是用于下一代显示和固态照明技术的有前景的电致发光器件。实现具有货架稳定性和高性能的QLED对于其实际应用至关重要。然而,成功展示具有高效率的货架稳定型QLED仅限于红色器件。在此,我们开发了一种基于溶液的胺配体交换策略来钝化光学ZnO(O-ZnO)纳米晶体的表面,从而抑制绿色和蓝色量子点/氧化物界面处的激子猝灭。此外,我们设计了由胺改性的O-ZnO/导电ZnO组成的新型双层氧化物电子传输层。这种设计在绿色和蓝色QLED中同时提供了抑制的界面激子猝灭和足够的电子传输,从而产生了具有高效率的货架稳定型绿色和蓝色器件。我们的器件在储存270天后,外部量子效率的变化可忽略不计(绿色器件的最大外部量子效率为22.4%,蓝色器件为14.3%)。我们的工作代表了QLED技术实际应用向前迈出的一步。