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◆ European Journal of Organic Chemistry2026-05-04· Chemistry

N‐Glycosyl Triazoline Glycomimetics via Huisgen Cycloaddition With an Electron‐Deficient Alkene and BF <sub>3</sub> ‐Catalysed Triazoline Fragmentation to Aziridines

Aaron McCormack, Ashis Dhara, Lamis Alaa Eldin Refat, Mikael Bols, Paul V. Murphy

原始摘要(英文原文)· Original abstract
Triazoline and aziridine derivatives were synthesised by diastereo‐ and regioselective Huisgen cycloaddition of 2,3,4,6‐tetra‐O‐acetyl‐β‐D‐galactopyranosyl azide with ethyl 4,4,4‐trifluorocrotonate. Use of a continuous‐flow reactor led to reduced reaction time and enabled use of ethyl acetate as a greener solvent for the cycloaddition. Thermolysis of trans‐ triazolines yielded trans‐ aziridines, while treatment with BF 3 ·OEt 2 (or BnOTf) produced cis‐ aziridines. Density functional theory calculations supported a mechanism for trans‐ triazoline conversion to cis‐ aziridine involving boron trifluoride catalysed NN bond cleavage to give an intermediate with boron trifluoride stabilised nitrogen that then undergoes S N 2 reaction. Deacetylation yielded N ‐galactopyranosyl aziridines and triazolines, which were identified as substrate‐based inhibitors of β‐galactosidase. Synthesis of glycosyl aziridines from reactions of N ‐phenylmaleimide is included.
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N‐Glycosyl Triazoline Glycomimetics via Huisgen Cycloaddition With an Electron‐Deficient Alkene and BF <sub>3</sub> ‐Catalysed Triazoline Fragmentation to Aziridines — 科研速览 Science Skim