Angewandte Chemie · 2016 · 38 citations · 36 references
Chemical EngineeringCross-coupling ReactionAmide C−n BondSelectivity PrinciplesEngineeringNatural SciencesDiversity-oriented SynthesisCatalytic SynthesisOrganic ChemistryAliphatic AmidesCatalysisOrganometallic CatalysisChemistryAmide Competition ExperimentsSynthetic ChemistryBiomolecular Engineering
Abstract Recent studies have demonstrated that amides can be used in nickel‐catalyzed reactions that lead to cleavage of the amide C−N bond, with formation of a C−C or C−heteroatom bond. However, the general scope of these methodologies has been restricted to amides where the carbonyl is directly attached to an arene or heteroarene. We now report the nickel‐catalyzed esterification of amides derived from aliphatic carboxylic acids. The transformation requires only a slight excess of the alcohol nucleophile and is tolerant of heterocycles, substrates with epimerizable stereocenters, and sterically congested coupling partners. Moreover, a series of amide competition experiments establish selectivity principles that will aid future synthetic design. These studies overcome a critical limitation of current Ni‐catalyzed amide couplings and are expected to further stimulate the use of amides as synthetic building blocks in C−N bond cleavage processes.
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Marna C. Whisler, Stephen L. MacNeil, Victor Snieckus et al. · Angewandte Chemie International Edition · 2004 · 702 citations
Conversion of amides to esters by the nickel-catalysed activation of amide C–N bonds
Liana Hie, Noah F. Fine Nathel, Tejas K. Shah et al. · Nature · 2015 · 544 citations · Full text