Li Deli, Li Jiuyan, Liu Di, Li Wei, Ko Chang-Lun, Hung Wen-Yi, Duan Chunhui
State Key Laboratory of Fine Chemicals, College of Chemical Engineering, Dalian University of Technology, 2 Linggong Road, Dalian 116024, China.
Institute of Optoelectronic Sciences, National Taiwan Ocean University, Keelung 202, Taiwan.
ACS Appl Mater Interfaces. 2021 Mar 24;13(11):13459-13469. doi: 10.1021/acsami.0c20128. Epub 2021 Mar 11.
Up to now, the most efficient blue phosphorescent organic light-emitting diode (PhOLED) was achieved with a maximum external quantum efficiency (η) of 34.1% by using an exciplex cohost. It still remains a challenge to obtain such high efficiencies using a single-host matrix. In this work, a highly efficient sky-blue PhOLED is successfully fabricated using a newly developed bipolar host material, namely 5-(2-(9-[3,9'-bicarbazol]-9-yl)phenyl)nicotinonitrile (-PyCNBCz), which realizes a η of 29.4% at a practical luminance of 100 cd m and a maximum η of 34.6% (at 23 cd m). The present device is characterized by simple configuration with a single host and single emitting layer. -PyCNBCz also reveals high efficiency of 28.2% (94.8 cd A) when used as the host for green PhOLED. Under identical conditions, -PyCNBCz always outperforms than its isomer 3-PyCNBCz (5-(9-phenyl-9-[3,9'-bicarbazol]-6-yl)nicotinonitrile) in terms of more balanced charge transportation, higher photoluminescent quantum yields of over 90%, and higher horizontal orientation ratio of the emitting dipole for the host-dopant films, which finally lead to its superior performance in PhOLEDs. It is observed that all these merits of -PyCNBCz benefit from its ortho-linking style of carbazole (p-type unit) and cyanopyridine (n-type unit) on the phenylene bridge and the resultant molecular conformation.
到目前为止,通过使用激基复合物共主体实现了最高外部量子效率(η)为34.1%的最高效蓝色磷光有机发光二极管(PhOLED)。使用单主体基质获得如此高的效率仍然是一个挑战。在这项工作中,使用新开发的双极性主体材料,即5-(2-(9-[3,9'-联咔唑]-9-基)苯基)烟腈(-PyCNBCz)成功制备了一种高效天蓝色PhOLED,其在实际亮度为100 cd m时实现了29.4%的η,最大η为34.6%(在23 cd m时)。当前器件的特点是具有单主体和单发射层的简单结构。-PyCNBCz用作绿色PhOLED的主体时也显示出28.2%(94.8 cd A)的高效率。在相同条件下,-PyCNBCz在电荷传输更平衡、光致发光量子产率超过90%以及主体-掺杂剂薄膜发射偶极子的水平取向比更高方面总是优于其异构体3-PyCNBCz(5-(9-苯基-9-[3,9'-联咔唑]-6-基)烟腈),这最终导致其在PhOLED中具有优异的性能。据观察,-PyCNBCz的所有这些优点都得益于其在亚苯基桥上咔唑(p型单元)和氰基吡啶(n型单元)的邻位连接方式以及由此产生的分子构象。