Evaluation of In-Batch and In-Flow Synthetic Strategies towards the Stereoselective Synthesis of a Fluorinated Analogue of Retro-Thiorphan

Molecules. 2019 Jun 18;24(12):2260. doi: 10.3390/molecules24122260.

Abstract

A stereoselective synthetic strategy for the preparation of trifluoromethylamine mimics of retro-thiorphan, involving a diastereoselective, metal-free catalytic step, has been studied in batch and afforded the target molecule in good yields and high diastereoselectivity. A crucial point of the synthetic sequence was the catalytic reduction of a fluorinated enamine with trichlorosilane as reducing agent in the presence of a chiral Lewis base. The absolute configuration of the key intermediate was unambiguously assigned by X-ray analysis. The synthesis was also investigated exploiting continuous flow reactions; that is, an advanced intermediate of the target molecule was synthesized in only two in-flow synthetic modules, avoiding isolation and purifications of intermediates, leading to the isolation of the target chiral fluorinated amine in up to an 87:13 diastereoisomeric ratio.

Keywords: flow chemistry; fluorinated derivatives; organocatalysis; reduction; stereoselective synthesis.

MeSH terms

  • Catalysis
  • Halogenation
  • Models, Molecular
  • Molecular Structure
  • Oxidation-Reduction
  • Stereoisomerism
  • Thiorphan / analogs & derivatives*
  • Thiorphan / chemistry
  • Thiorphan / metabolism

Substances

  • retrothiorphan
  • Thiorphan