Lee Jiun-Haw, Chen Chia-Hsun, Lin Bo-Yen, Lan Yi-Hsin, Huang Yi-Mei, Chen Nai-Jing, Huang Jau-Jiun, Volyniuk Dmytro, Keruckiene Rasa, Grazulevicius Juozas Vidas, Wu Yuh-Renn, Leung Man-Kit, Chiu Tien-Lung
Graduate Institute of Photonics and Optoelectronics and Department of Electrical Engineering, National Taiwan University, Taipei 10617, Taiwan.
Department of Chemistry, National Taiwan University, Taipei 10617, Taiwan.
ACS Appl Mater Interfaces. 2020 Nov 4;12(44):49895-49904. doi: 10.1021/acsami.0c13705. Epub 2020 Oct 23.
High-quality host materials are indispensable for the construction in the emitting layer of efficient organic light-emitting diodes (OLEDs), especially in a guest and host system. The good carrier transport and energy transfer between the host and emitters are out of necessity. In this work, a wide bandgap and bipolar organic compound, 2,2'-bis(4,5-diphenyl-(1,2,4)-triazol-3-yl)biphenyl (), conjugating two electron-transporting triazole moieties on a hole-transporting biphenyl core, was synthesized and characterized. The wide bandgap of 4.0 eV makes the promise in efficient energy transfer between the host and various color emitters to apply as the universal host, especially for blue emitters. The close electron and hole mobilities perform the same order of 10 cm·V·s, identified as bipolar behavior and benefited for carrier balance at low bias. Although carrier transportation belongs to bipolar behavior at a low electrical field, the electron mobility is much faster than the hole one at a high electrical field and belongs to electron-transporting behavior. Employing the as the host matrix mixed with a phosphor dopant, iridium(III)bis[4,6-di-fluorophenyl-pyridinato-N,C]picolinate, a high-efficiency sky-blue phosphorescent organic light-emitting diode (OLED) was achieved with a maximum current efficiency of 65.9 cd/A, maximum power efficiency of 62.8 lm/W, and maximum external quantum efficiency of 30.2%.
高质量的主体材料对于高效有机发光二极管(OLED)发光层的构建至关重要,特别是在客体 - 主体体系中。主体与发光体之间良好的载流子传输和能量转移是必不可少的。在这项工作中,合成并表征了一种宽带隙双极性有机化合物2,2'-双(4,5-二苯基-(1,2,4)-三唑-3-基)联苯( ),它在空穴传输联苯核上连接了两个电子传输三唑部分。4.0 eV的宽带隙使其有望在主体与各种颜色发光体之间实现高效能量转移,从而用作通用主体,尤其是对于蓝色发光体。其电子和空穴迁移率相近,均为10 cm·V·s左右,表现出双极性行为,有利于在低偏压下实现载流子平衡。尽管在低电场下载流子传输属于双极性行为,但在高电场下电子迁移率比空穴迁移率快得多,属于电子传输行为。以 作为主体基质与磷光掺杂剂双[4,6-二氟苯基吡啶-N,C]吡啶甲酸铱(III)混合,制备出了一种高效天蓝色磷光有机发光二极管(OLED),其最大电流效率为65.9 cd/A,最大功率效率为62.8 lm/W,最大外量子效率为30.2%。