Molecules (Jun 2021)

NbCl<sub>5</sub>-Mg Reagent System in Regio- and Stereoselective Synthesis of (2<i>Z</i>)-Alkenylamines and (3<i>Z</i>)-Alkenylols from Substituted 2-Alkynylamines and 3-Alkynylols

  • Rita N. Kadikova,
  • Azat M. Gabdullin,
  • Oleg S. Mozgovoj,
  • Ilfir R. Ramazanov,
  • Usein M. Dzhemilev

DOI
https://doi.org/10.3390/molecules26123722
Journal volume & issue
Vol. 26, no. 12
p. 3722

Abstract

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The reduction of N,N-disubstituted 2-alkynylamines and substituted 3-alkynylols using the NbCl5–Mg reagent system affords the corresponding dideuterated (2Z)-alkenylamine and (3Z)-alkenylol derivatives in high yields in a regio- and stereoselective manner through the deuterolysis (or hydrolysis). The reaction of substituted propargylamines and homopropargylic alcohols with the in situ generated low-valent niobium complex (based on the reaction of NbCl5 with magnesium metal) is an efficient tool for the synthesis of allylamines and homoallylic alcohols bearing a 1,2-disubstituted double bond. It was found that the well-known approach for the reduction of alkynes based on the use of the TaCl5-Mg reagent system does not work for 2-alkynylamines and 3-alkynylols. Thus, this article reveals a difference in the behavior of two reagent systems—NbCl5-Mg and TaCl5-Mg, in relation to oxygen- and nitrogen-containing alkynes. A regio- and stereoselective method was developed for the synthesis of nitrogen-containing E-β-chlorovinyl sulfides based on the reaction of 2-alkynylamines with three equivalents of methanesulfonyl chloride in the presence of stoichiometric amounts of niobium(V) chloride and magnesium metal in toluene.

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