Grzelak Izabela, Orwat Bartosz, Kownacki Ireneusz, Hoffmann Marcin
Faculty of Chemistry, Adam Mickiewicz University in Poznan, St. Umultowska 89b, 61-614, Poznan, Poland.
Center for Advanced Technologies, Adam Mickiewicz University in Poznan, St. Umultowska 89c, 61-614, Poznan, Poland.
J Mol Model. 2019 May 10;25(6):154. doi: 10.1007/s00894-019-4035-2.
A series of facial fac-[Ir(5-R-bzq)] and meridional mer-[Ir(5-R-bzq)] Ir(III) complexes bearing benzo[h]quinoline-based ligands have been studied with the help of density functional theory (DFT) methods. A detailed electronic structure comparison of the two isomers has been addressed to point out the differences in their stability and photophysical properties. An influence of substituent impact on optical and electronic properties of Ir(III) homoleptic complexes was also explored by introducing into the cyclometalated ligands substituents characterized with different electronic properties, e.g., R = H, F, OPh, NMe, CF, and p-CH-NPh. The results herein show that fac and mer isomers exhibit remarkable differences in stability and photophysical properties. The introduction of different functional groups into bzq ligands, despite very similar geometrical structures, significantly affected HOMO and LUMO energy levels and energy gaps of the examined Ir(III) complexes.
借助密度泛函理论(DFT)方法,对一系列带有苯并[h]喹啉基配体的面式fac-[Ir(5-R-苯并喹啉)]和经式mer-[Ir(5-R-苯并喹啉)]铱(III)配合物进行了研究。对这两种异构体进行了详细的电子结构比较,以指出它们在稳定性和光物理性质方面的差异。还通过在环金属化配体中引入具有不同电子性质的取代基,例如R = H、F、OPh、NMe、CF和对-CH-NPh,探讨了取代基对铱(III)均配配合物光学和电子性质的影响。本文结果表明,面式和经式异构体在稳定性和光物理性质上表现出显著差异。尽管bzq配体的几何结构非常相似,但在其中引入不同的官能团会显著影响所研究铱(III)配合物的最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)能级以及能隙。