Publication | Open Access
Rigid biimidazole ancillary ligands as an avenue to bright deep blue cationic iridium(<scp>iii</scp>) complexes
27
Citations
77
References
2014
Year
Inorganic CompoundInorganic ChemistryEngineeringPhotochemistryDeep BlueCoordination ComplexMolecular ComplexChemistryIdentical Optoelectronic PropertiesPhotophysical PropertyInorganic SynthesisBiophysicsBiomolecular EngineeringParent Biimidazole
Herein we report the synthesis and optoelectronic characterisation of three deep blue-emitting cationic iridium complexes, of the form [Ir(dFppy)(2)(N^N)]PF(6), bearing biimidazole-type N^N ancillary ligands (dFppyH = 2-(2,4-difluorophenyl)pyridine). Complex 1 contains the parent biimidazole, biim, while 2 contains a dimethylated analog, dMebiim, and 3 contains an ortho-xylyl-tethered biimidzole, o-xylbiim. We explore a strategy of tethering the biimidazole in order to rigidify the complex and increase the photoluminescent quantum yield, culminating in deep blue (λ(max): 457 nm in MeOH at 298 K) ligand-centered emission with a very high photoluminescent quantum yield of 68% and microsecond emission lifetime. Density functional theory calculations elucidate the origin of such disparate excited state kinetics across this series, especially in light of virtually identical optoelectronic properties observed for these compounds.
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