4.5 Article

α-Carbonylimine to α-Carbonylamide: An Efficient Oxidative Amidation Approach

Journal

EUROPEAN JOURNAL OF ORGANIC CHEMISTRY
Volume 2015, Issue 16, Pages 3577-3586

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/ejoc.201500251

Keywords

Synthetic methods; Oxidation; Amines; Amides; Sulfonamides

Funding

  1. Council of Scientific and Industrial Research (CSIR)
  2. Council of Scientific and Innovative research (CSIR) [BSC0108 (IIIM/1753/2015)]

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Our interest in generating amide bonds by employing the activated C=N system has led to the development of an efficient oxidative amidation reaction between 2-oxoaldehyde and weak nucleophilic amines (anilines, benzamides and sulfonamides). Mechanistic studies support the involvement of -carbonylimine (-CO-C=N-) based compounds or intermediates as a central feature of the reaction, in which an adjacent CO moiety enhances the electrophilicity of the C=N system, which favors attack of the oxidant (TBHP or SeO2), thereby resulting in the generation of the desired products in good yields. The direct oxidative coupling of 2-oxoaldehydes and weak nucleophilic amines has been accomplished through either MgSO4-TBHP-pyridine/CuBr, or SeO(2)pyridine promoted methods. In the current study, SeO(2)pyridine emerged as a versatile reagent with which to promote initial -carbonylimine formation between 2-oxoaldehyde and weak nucleophilic amine, and subsequent oxidation to the corresponding -carbonylamide. The reported methodology constitutes one of the few reports of the synthesis of -ketoamides from anilines, perhaps the second report for the generation of -ketoimides, and the first report of the generation of 2-oxoamides with sulfonamides.

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