Ferrier rearrangement promoted by an electrochemically generated zirconium catalyst

Carbohydr Res. 2015 Apr 30:407:111-21. doi: 10.1016/j.carres.2015.02.001. Epub 2015 Feb 14.

Abstract

In situ generated zirconium catalyst from a sacrificial zirconium anode was successfully applied to promote Ferrier rearrangement of 3,4,5-tri-O-acetyl-D-glucal and 6-deoxy-3,4-di-O-acetyl-L-glucal (3,4-di-O-acetyl-L-rhamnal) in the presence of three thiols and eleven thiophenols as nucleophiles. A simple constant current electrolysis (20 mA, 0.4 F mol(-1)) of an acetonitrile solution of lithium perchlorate (0.1 M) containing the corresponding glycal and S-nucleophiles, using a zirconium anode and a platinum cathode resulted in the successful synthesis of the corresponding 2,3-unsaturated peracetylated thioglycosides (with an average anomer ratio α/β=4.129 in the case of peracetylated D-glucal and 8.740 in the case of L-rhamnal). The same procedure proved to be appropriate in synthesizing dihydropyran derivatives ('C-glycosides') using allyltrimethylsilane as the nucleophile (only 'α-anomers' were obtained). All new compounds were fully characterized by spectral data, whereas single-crystal X-ray analysis was performed for two thioglycosides.

Keywords: Anodic generation of catalyst; Peracetylated d-glucal; Peracetylated l-rhamnal; Pseudoglycals; Thiophenols; Zirconium.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Carbohydrate Conformation
  • Catalysis
  • Crystallography, X-Ray
  • Electrochemical Techniques
  • Platinum / chemistry
  • Thioglycosides / chemical synthesis*
  • Thioglycosides / chemistry
  • Zirconium / chemistry*

Substances

  • Thioglycosides
  • Platinum
  • Zirconium