Xie Mingyuan, Guo Jie, Zhang Xiaoyu, Bi Chenghao, Zhang Lin, Chu Zema, Zheng Weitao, You Jingbi, Tian Jianjun
Institute for Advanced Materials and Technology, University of Science and TechnologyBeijing100083, China.
Key Laboratory of Automobile Materials Ministry of Education, College of Materials Science and Engineering, Jilin University, Changchun130012, China.
Nano Lett. 2022 Oct 26;22(20):8266-8273. doi: 10.1021/acs.nanolett.2c03062. Epub 2022 Oct 17.
It is still challenging to achieve high-efficiency pure-red (620-650 nm wavelength) perovskite light-emitting diodes (PeLEDs). Herein, we report pure-red PeLEDs with Commission Internationale de l'Eclairage coordinates (0.703, 0.297) meeting the Rec. 2020, an external quantum efficiency of 20.8%, and a luminance of 3775 cd/m. This design is based on the strong quantum confinement CsPbI quantum dots (QDs) capped by composite ligands of 3-phenyl-1-propylamine and tetrabutylammonium iodide. This strategy stabilized the structure of the strong-confined QDs and reduced the influence of the electric field-induced Stark effect on the PeLEDs. Furthermore, the exciton binding energy of the QDs was decreased by the composited ligands to suppress Auger recombination within the devices. Additionally, the valence-band maximum of the QDs was lifted to match the hole-transport layer, thus balancing charge injection in the PeLEDs. Our device also demonstrated a stable electroluminescence spectrum and a lifetime of 5.6 times longer than the control device.
实现高效的纯红色(波长620 - 650 nm)钙钛矿发光二极管(PeLEDs)仍然具有挑战性。在此,我们报道了国际照明委员会坐标为(0.703, 0.297)、符合Rec. 2020标准、外量子效率为20.8%且亮度为3775 cd/m²的纯红色PeLEDs。该设计基于由3 - 苯基 - 1 - 丙胺和碘化四丁铵的复合配体封端的强量子限制CsPbI量子点(QDs)。这种策略稳定了强限制量子点的结构,并降低了电场诱导的斯塔克效应对PeLEDs的影响。此外,复合配体降低了量子点的激子结合能,以抑制器件内的俄歇复合。另外,量子点的价带最大值被提高以匹配空穴传输层,从而平衡PeLEDs中的电荷注入。我们的器件还展示了稳定的电致发光光谱,并且寿命比对照器件长5.6倍。