Publication | Closed Access
Highly Regioselective Amination of Unactivated Alkanes by Hypervalent Sulfonylimino-λ <sup>3</sup> -Bromane
167
Citations
25
References
2011
Year
Chemical EngineeringRegioselective AminationEngineeringBiochemistryNatural SciencesNegative Activation EntropyOrganic ChemistryOrganometallic CatalysisCatalysisMolecular CatalysisChemistryDeuterium Isotope EffectsHalogenationUnactivated AlkanesSynthetic ChemistryTriflyl-substituted Amines
Amination of alkanes has generally required metal catalysts and/or high temperatures. Here we report that simple exposure of a broad range of alkanes to N-triflylimino-λ(3)-bromane 1 at ambient temperature results in C-H insertion of the nitrogen functionality to afford triflyl-substituted amines in moderate to high yields. Marked selectivity for tertiary over secondary C-H bonds was observed; primary (methyl) C-H bonds were inert. Addition of hexafluoroisopropanol to inhibit decomposition of 1 dramatically improved the C-H amination efficiencies. Second-order kinetics, activation parameters (negative activation entropy), deuterium isotope effects, and theoretical calculations suggest a concerted asynchronous bimolecular transition state for the metal-free C-H amination event.
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