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Ruthenium and Iron-Catalysed Decarboxylative N-alkylation of Cyclic α-Amino Acids with Alcohols: Sustainable Routes to Pyrrolidine and Piperidine Derivatives.

Anastasiia AfanasenkoRachael HannahTao YanSaravanakumar ElangovanKatalin Barta
Published in: ChemSusChem (2019)
A modular and waste-free strategy for constructing N-substituted cyclic amines via decarboxylative N-alkylation of α-amino acids employing ruthenium- and iron-based catalysts is presented. The reported method allows the synthesis of a wide range of five- and six-membered N-alkylated heterocycles in moderate-to-excellent yields starting from predominantly proline and a broad range of benzyl alcohols, and primary and secondary aliphatic alcohols. Examples using pipecolic acid for the construction of piperidine derivatives, as well as the one-pot synthesis of α-amino nitriles, are also shown.
Keyphrases
  • amino acid
  • visible light
  • iron deficiency
  • heavy metals
  • structure activity relationship
  • molecular docking
  • highly efficient
  • sewage sludge
  • risk assessment
  • municipal solid waste
  • life cycle