#Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
ACS Appl Mater Interfaces. 2015 May 13;7(18):9445-52. doi: 10.1021/am509014v. Epub 2015 Apr 30.
Three bipolar hosts, namely TPA-DAF, TPA-DAF2, and TPA-DAF3, comprising an electron-donating triphenylamine (TPA) group and electron-accepting 4,5-diazafluorene (DAF) units are investigated for phosphorescent organic light-emitting diodes (PhOLEDs). Given the nonplanar structure of the sp(3)-hybridized C9 atom in DAF unit, these molecules have a highly nonplanar configuration, good film-forming property, and high triplet energy (ET) of 2.88-2.89 eV. Among them, TPA-DAF shows more balanced carrier injecting/transporting ability, suitable highest occupied molecular orbital (MO) energy level and higher current density, and therefore TPA-DAF-based devices exhibit the best performances, having an extremely slight efficiency roll-off with current efficiency of 20.0 cd/A at 973 cd/m(2), 19.5 cd/A at 5586 cd/m(2), and 17.6 cd/A at 9310 cd/m(2) for blue PhOLEDs; 23.5 cd/A at 1059 cd/m(2) and 15.3 cd/A at 8850 cd/m(2) for green PhOLEDs; and 12.2 cd/A at 1526 cd/m(2), 10.5 cd/A at 5995 cd/m(2), and 9.2 cd/A at 8882 cd/m(2) for red PhOLEDs, respectively. The results also provide a direct proof for the influence of charge balance on the device performance.
三种双极性主体,即 TPA-DAF、TPA-DAF2 和 TPA-DAF3,由供电子的三苯胺(TPA)基团和受电子的 4,5-二氮芴(DAF)单元组成,用于研究磷光有机发光二极管(PhOLED)。由于 DAF 单元中 sp(3)杂化的 C9 原子的非平面结构,这些分子具有高度非平面的构象、良好的成膜性能和较高的三重态能量(ET)为 2.88-2.89 eV。其中,TPA-DAF 表现出更平衡的载流子注入/传输能力、合适的最高占据分子轨道(MO)能级和更高的电流密度,因此基于 TPA-DAF 的器件表现出最佳的性能,具有极轻微的效率滚降,在 973 cd/m(2)时的电流效率为 20.0 cd/A,在 5586 cd/m(2)时为 19.5 cd/A,在 9310 cd/m(2)时为 17.6 cd/A,蓝色 PhOLED 的电流效率为 23.5 cd/A 在 1059 cd/m(2)和 15.3 cd/A 在 8850 cd/m(2),绿光 PhOLED 的电流效率为 12.2 cd/A 在 1526 cd/m(2),10.5 cd/A 在 5995 cd/m(2)和 9.2 cd/A 在 8882 cd/m(2),红光 PhOLED 的电流效率分别为 15.3 cd/A 和 9.2 cd/A。这些结果也为电荷平衡对器件性能的影响提供了直接的证明。