Abstract
This work is the study of the role of a remote amine substituent on the terpyridine ligand in controlling the photophysical and electroluminescent behavior of complexes [Ir(Ph-btz)2(R-C6H4-terpy-κ2N)]PF6. Introduction of the amine group into the Ph-terpy framework induced perturbations in the absorption and luminescent characteristics of [Ir(Ph-btz)2(R-C6H4-terpy-κ2N)]PF6 relative to the parent chromophores [Ir(Ph-btz)2(terpy-κ2N)]PF6 and [Ir(Ph-btz)2(C6H5-terpy-κ2N)]PF6. Consistent with the presence of vibronic structure, negligible emission solvatochromism, weak rigidochromic behavior, and substantial overlap with the phosphorescence of 2-phenylbenzothiazole, the emissive triplet excited state of the model complexes was assigned to 3ILPh-btz with a minor 3MLCT contribution. The amine-substituted Ir(III) complexes were found to exhibit altered emission characteristics, manifested by a structureless emission band impacted by the amine group and solvent polarity. It was rationalized by a switch from the 3ILPh-btz/MLCT excited state in model chromophores to a configurationally mixed 3ILCT/IL/MLCTR-terpy in [Ir(Ph-btz)2(R-C6H4-terpy-κ2N)]PF6. With respect to the preliminary electroluminescence investigations, it was found that the introduction of the triphenylamine moiety enhances the stability of O/PEDOT/PSS/complex/Al devices. A deep insight into ground- and excited-state characters and photophysical properties of [Ir(Ph-btz)2(R-C6H4-terpy-κ2N)]PF6 was obtained by applying a wide range of experimental techniques, including cyclic voltammetry, UV–vis spectroscopy, photoluminescence spectroscopy, and transient absorption, complemented by DFT and TD-DFT calculations.
| Original language | English |
|---|---|
| Pages (from-to) | 14112-14133 |
| Number of pages | 22 |
| Journal | Inorganic Chemistry |
| Volume | 65 |
| Issue number | 25 |
| DOIs | |
| Publication status | Published - 29 Jun 2026 |
ASJC Scopus subject areas
- Physical and Theoretical Chemistry
- Inorganic Chemistry
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