Modular and stereoselective synthesis of Si-/Ge-glycosides via palladium-catalyzed bis-silylation and bis-germanylation of glycals

Abstract

In this study, we report an efficient palladium-catalyzed C–H silylation and germanylation that enables rapid modular and stereoselective access to various highly decorated Si- and Ge-glycosides. The protocol employs hexamethyldisilane and hexamethyldigermane as the model bis-silylation and bis-germanylation reagents, respectively, with NBE derivatives as the ortho-C–H activator. Additionally, a series of Si-glycosides bearing one (Z)-β-substituted vinylsilane and Ge-glycosides bearing one (Z)-β-substituted vinylgermane were also obtained under mild conditions by employing 2,3-dicarbomethoxy-7-oxanorbornadiene (ONBD) as both a switch and an ethylene surrogate. This work pioneers the Catellani strategy in the assembly of Si- and Ge-glycosides, establishing an efficient platform for bioactive glycomimetic development and advancing carbohydrate-based drug discovery.

Graphical abstract: Modular and stereoselective synthesis of Si-/Ge-glycosides via palladium-catalyzed bis-silylation and bis-germanylation of glycals

Supplementary files

Article information

Article type
Research Article
Submitted
31 Mar 2026
Accepted
15 May 2026
First published
21 May 2026

Org. Chem. Front., 2026, Advance Article

Modular and stereoselective synthesis of Si-/Ge-glycosides via palladium-catalyzed bis-silylation and bis-germanylation of glycals

W. Lv, X. Zhu, W. Peng, D. Zhang, Y. Yan, J. Lu, W. Yang, Q. Li and G. Cheng, Org. Chem. Front., 2026, Advance Article , DOI: 10.1039/D6QO00406G

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