Takizawa Shin-ya, Nishida Jun-ichi, Tsuzuki Toshimitsu, Tokito Shizuo, Yamashita Yoshiro
Department of Electronic Chemistry, Interdisciplinary Graduate School of Science and Engineering, Tokyo Institute of Technology, Nagatsuta, Midori-ku, Yokohama 226-8502, Japan.
Inorg Chem. 2007 May 14;46(10):4308-19. doi: 10.1021/ic0624322. Epub 2007 Apr 13.
A series of new blue-phosphorescent iridium(III) complexes 1-14 with ligands of 2-phenylimidazo[1,2-a]pyridine (pip) derivatives were successfully prepared, and their electrochemical, photophysical, and electroluminescent (EL) properties were systematically investigated. It was found that the emission maxima are significantly dependent on the substituents on the phenyl ring in the range of 489-550 nm. For instance, electron-withdrawing groups such as F and CF3 shift the emission maxima to shorter wavelengths by lowering the HOMO levels (complexes 4-8), whereas the extended pi-conjugation leads to bathochromic shifts (2, 3). To obtain further information about the frontier orbital, substitution effects on the imidazole part were also investigated here, and it was found that electron-withdrawing or -donating substituents on the imidazole ring affected the emission maxima (9, 557 nm; 10, 525 nm). These results including their oxidation potentials suggest that the HOMO of the pip-based complex is a mixture of Ir-d, phenyl-pi, and imidazole-pi orbitals. From this viewpoint, combination of electron-withdrawing substituents on the phenyl ring with the use of another ancillary ligand enabled further blue shifts (13, 468, 499 nm; 14, 464, 494 nm). This new system based on pip is one of the rare examples of iridium complexes whose emissions can be tuned to the blue region. Preliminary polymer light-emitting devices (PLEDs) employing the Ir complexes were fabricated, and the devices showed moderate EL efficiencies.
成功制备了一系列以2-苯基咪唑并[1,2-a]吡啶(pip)衍生物为配体的新型蓝色磷光铱(III)配合物1-14,并系统研究了它们的电化学、光物理和电致发光(EL)性质。发现发射最大值在489-550 nm范围内显著依赖于苯环上的取代基。例如,吸电子基团如F和CF3通过降低HOMO能级使发射最大值向较短波长移动(配合物4-8),而扩展的π共轭导致红移(2,3)。为了获得有关前沿轨道的更多信息,还在此研究了咪唑部分的取代效应,发现咪唑环上的吸电子或供电子取代基会影响发射最大值(9,557 nm;1,525 nm)。这些包括其氧化电位的结果表明,基于pip的配合物的HOMO是Ir-d、苯基-π和咪唑-π轨道的混合物。从这个角度来看,苯环上吸电子取代基与使用另一种辅助配体的组合能够实现进一步的蓝移(13,468,499 nm;14,464,494 nm)。这种基于pip的新体系是发射可调节至蓝色区域的铱配合物的罕见例子之一。制备了采用Ir配合物的初步聚合物发光器件(PLED),器件显示出适度的EL效率。