135700-47-9Relevant academic research and scientific papers
Free Radical Substitutions of Acyloxy Groups in Carbohydrate α-Ketoesters
Ferrier, Robert J.,Lee, Cheang-Kuan,Wood, Troy A.
, p. 690 - 691 (1991)
A range of carbohydrate derivatives containing α-ketoester functionality undergo efficient reductive loss of the acyloxy groups when treated with tri-n-butyltin hydride in refluxing benzene and in the presence of azoisobutyronitrile (AIBN) as radical init
Claisen rearrangement of hexenopyranoside allyl ethers: A new approach to α-branched-chain dicarbonyl sugars
Furuichi,Hashimoto,Miwa
, p. 63 - 77 (2007/10/02)
The β-hydroxy phenylselenides prepared by cleavage of 2,3-anhydropyranosides with sodium phenylselenide were quantitatively transformed into the corresponding allyl ethers. Oxidation of the allyl ethers, followed by thermal elimination and rearrangement, gave C-allylhexosuloses in good yield. Rearrangement of ethers 10a and 10c was especially stereoselective, giving axially oriented C-allylhexosulose derivatives, which were readily epimerized to their equatorial isomers in quantitative yield. In the Claisen rearrangement of the crotyl ether 14c, the chirality of the sugar was transferred to the newly formed asymmetric carbon atom. This procedure provides a convenient method to convert an anhydro sugar into a C-allylhexosulose derivative. The β-hydroxy phenylselenides prepared by cleavage of 2,3-anhydropyranosides with sodium phenylselenide were quantitatively transformed into the corresponding allyl ethers. Oxidation of the allyl ethers, followed by thermal elimination and rearrangement, gave C-allylhexosuloses in good yield. Rearrangement of ethers 10a and 10c was especially stereoselective, giving axially oriented C-allylhexosulose derivatives, which were readily epimerized to their equatorial isomers in quantitative yield. In the Claisen rearrangement of the crotyl ether 14c, the chirality of the sugar was transferred to the newly formed asymmetric carbon atom. This procedure provides a convenient method to convert an anhydro sugar into a C-allylhexosulose derivative.
