Journal of the American Chemical Society · 2012 · 162 citations · 61 references
Inorganic ChemistryReal-time MonitoringChemical EngineeringOxidation CatalysisEngineeringPhotochemistryInorganic PhotochemistryHeterogeneous CatalysisSynthetic PhotochemistryPhotocatalysisMolecular Iridium PrecursorsSingle-atom CatalystCatalysisRedox ChemistryChemistry
Real-time monitoring of light scattering and UV-vis profiles of four different Cp*Ir(III) precursors under various conditions give insight into nanoparticle formation during oxidation catalysis with NaIO(4) as primary oxidant. Complexes bearing chelate ligands such as 2,2'-bipyridine, 2-phenylpyridine, or 2-(2'-pyridyl)-2-propanolate were found to be highly resistant toward particle formation, and oxidation catalysis with these compounds is thus believed to be molecular in nature under our conditions. Even with the less stable hydroxo/aqua complex [Cp*(2)Ir(2)(μ-OH)(3)]OH, nanoparticle formation strongly depended on the exact conditions and elapsed time. Test experiments on the isolated particles and comparison of UV-vis data with light scattering profiles revealed that the formation of a deep purple-blue color (~580 nm) is not indicative of particle formation during oxidation catalysis with molecular iridium precursors as suggested previously.
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Youngmin Lee, Jin Suntivich, Kevin J. May et al. · The Journal of Physical Chemistry Letters · 2012 · 3.4K citations
Materials Science, Oxygen Reduction Reaction, Chemical Engineering +14
The organometallic chemistry of the transition metals
Choice Reviews Online · 2001 · 1.7K citations