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Synthesis of Spirocyclic C‐Arylglycosides and ‐Ribosides by Ruthenium‐Catalyzed Cycloaddition
Authors:Yoshihiko Yamamoto Prof. Dr.  Ken Yamashita  Tomitaka Hotta  Toru Hashimoto  Makoto Kikuchi Dr.  Hisao Nishiyama Prof. Dr.
Affiliation:1. Department of Applied Chemistry, Graduate School of Science and Engineering, Tokyo Institute of Technology, O‐okayama, Meguro‐ku, Tokyo 152‐8552, Japan, Fax: (+81)?3‐5734‐3339;2. Department of Applied Chemistry, Graduate School of Engineering, Nagoya University, Chikusa, Nagoya 464‐8603, Japan
Abstract:
Spirocyclic C‐arylglycosides were synthesized from the appropriately protected δ‐gluconolactones. Addition of lithium acetylide followed by glycosylation with 3‐(trimethylsilyl)propargyl alcohol converted the δ‐gluconolactones into silylated diynes. After desilylation, subsequent ruthenium‐catalyzed cycloaddition of the resultant diynes with alkynes or chloroacetonitrile gave spirocyclic C‐arylglycosides in good yields and selectivity. This strategy was also extended to the synthesis of spirocyclic C‐arylribosides from the known γ‐ribonolactone derivative. Moreover, silver‐catalyzed iodination of the sugar diynes followed by ruthenium‐catalyzed cycloaddition with acetylene delivered spirocyclic C‐iodophenylglycosides and ‐ribosides, which were subjected to palladium‐catalyzed C? C bond‐forming reactions and copper‐catalyzed coupling with nitrogen heterocycles to lead to various derivatives.
Keywords:glycosides  copper  cycloaddition  palladium  ruthenium
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