Issue 22, 2003

C-Glycosylmethylene carbenes: synthesis of anhydro-aldose tosylhydrazones as precursors; generation and a new synthetic route to exo-glycals

Abstract

Acylated anhydro-aldononitriles (glycosyl cyanides) were transformed into anhydro-aldose tosylhydrazones by Raney–nickel reduction in the presence of tosylhydrazine in a one-pot reaction. The configuration of the C[double bond, length as m-dash]N double bond in these hydrazones was E as proven by 15N–1H coupling constants as well as X-ray crystallography. Thermolysis in refluxing 1,4-dioxane of the sodium salts of the tosylhydrazones obtained by sodium hydride (generally 10 eq.) resulted in the formation of anhydro-1-deoxy-ald-1-enitols (exo-glycals). “Dimeric” N-glycosylmethyl anhydro-aldose tosylhydrazones could also be isolated when the use of less base caused incomplete deprotonation of the starting compounds. This two-step procedure constitutes a novel, reasonably short synthetic pathway to acylated exo-glycals from the readily available glycosyl cyanides.

Graphical abstract: C-Glycosylmethylene carbenes: synthesis of anhydro-aldose tosylhydrazones as precursors; generation and a new synthetic route to exo-glycals

Supplementary files

Article information

Article type
Paper
Submitted
30 Jun 2003
Accepted
12 Sep 2003
First published
13 Oct 2003

Org. Biomol. Chem., 2003,1, 4039-4046

C-Glycosylmethylene carbenes: synthesis of anhydro-aldose tosylhydrazones as precursors; generation and a new synthetic route to exo-glycals

M. Tóth, K. E. Kövér, A. Bényei and L. Somsák, Org. Biomol. Chem., 2003, 1, 4039 DOI: 10.1039/B307378E

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