Publication | Open Access
Stable Iridium(IV) Complexes of an Oxidation-Resistant Pyridine-Alkoxide Ligand: Highly Divergent Redox Properties Depending on the Isomeric Form Adopted
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Citations
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References
2015
Year
Inorganic ChemistryChemical EngineeringStable IridiumEngineeringStable IrCoordination ComplexLigand Field RationalizationOrganic ChemistryOxidation-resistant Pyridine-alkoxide LigandReduction PotentialsCatalysisRedox ChemistryChemistryMolecular ComplexInorganic SynthesisIsomeric FormInorganic Compound
The preparation of the facial and meridional isomers of [Ir(pyalk)3] (pyalk = 2-(2-pyridyl)isopropanoate), as model complexes for a powerful water oxidation catalyst, is reported. The strongly donating N3O3 ligand set is very oxidation-resistant, yet promotes facile metal-centered oxidation to form stable Ir(IV) compounds. The Ir(III/IV) reduction potentials of the two isomers differ by 340 mV despite the identical ligand set. A ligand field rationalization is advanced and supported by DFT calculations.
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