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Selective formation of γ-lactams via C-H amidation enabled by tailored iridium catalysts.

Seung Youn HongYoonsu ParkYeongyu HwangYeong Bum KimMu-Hyun BaikSukbok Chang
Published in: Science (New York, N.Y.) (2018)
Intramolecular insertion of metal nitrenes into carbon-hydrogen bonds to form γ-lactam rings has traditionally been hindered by competing isocyanate formation. We report the application of theory and mechanism studies to optimize a class of pentamethylcyclopentadienyl iridium(III) catalysts for suppression of this competing pathway. Modulation of the stereoelectronic properties of the auxiliary bidentate ligands to be more electron-donating was suggested by density functional theory calculations to lower the C-H insertion barrier favoring the desired reaction. These catalysts transform a wide range of 1,4,2-dioxazol-5-ones, carbonylnitrene precursors easily accessible from carboxylic acids, into the corresponding γ-lactams via sp3 and sp2 C-H amidation with exceptional selectivity. The power of this method was further demonstrated by the successful late-stage functionalization of amino acid derivatives and other bioactive molecules.
Keyphrases
  • density functional theory
  • highly efficient
  • transition metal
  • molecular dynamics
  • amino acid
  • metal organic framework
  • case control
  • electron transfer
  • structure activity relationship