Formation of Enamines via Catalytic Dehydrogenation by Pincer-Iridium Complexes
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American Chemical Society
Abstract
Di-isopropylphosphino-substituted pincer-ligated iridium catalysts are found to be significantly more effective for the dehydrogenation of simple tertiary amines to give enamines than the previously reported di-t-butylphosphino-substituted species. It is also found that the di-isopropylphosphino-substituted complexes catalyze dehydrogenation of several β-functionalized tertiary amines to give the corresponding 1,2-difunctionalized olefins. The di-t-butylphosphino-substituted species are ineffective for such substrates; presumably, the marked difference is attributable to the lesser crowding of the di-isopropylphosphino-substituted catalysts. Experimentally determined kinetic isotope effects in conjunction with DFT-based analysis support a dehydrogenation mechanism involving initial pre-equilibrium oxidative addition of the amine α-C-H bond followed by rate-determining elimination of the β-C-H bond. Copyright © 2020 American Chemical Society.
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Amines, Catalysts, Iridium compounds, Alkene derivative, Coordination compound, Enamine, Hydrogen, Pincer iridium complex, Tertiary amine, Unclassified drug, Catalytic dehydrogenation, Dft-based, Functionalized, Iridium catalyst, Iridium complex, Kinetic isotope effects, Oxidative additions, Addition reaction, Article, Catalyst, Covalent bond, Dehydrogenation, Density functional theory, Elimination reaction, Isotope analysis, Molecular crowding, Oxidation, Precursor, Reaction analysis, Substitution reaction, Synthesis