Universität Bern, Departement für Chemie und Biochemie, Freiestrasse 3, 3012 Bern (Switzerland).
Angew Chem Int Ed Engl. 2014 Apr 7;53(15):3894-8. doi: 10.1002/anie.201309984. Epub 2014 Mar 11.
Thiol-ene coupling (TEC) reactions emerged as one of the most useful processes for coupling different molecular units under reaction mild conditions. However, TEC reactions involving weak CH bonds (allylic and benzylic fragments) are difficult to run and often low yielding. Mechanistic studies demonstrate that hydrogen-atom transfer processes at allylic and benzylic positions are responsible for the lack of efficiency of the radical-chain process. These competing reactions cannot be prevented, but reported herein is a method to repair the chain process by running the reaction in the presence of triethylborane and catechol. Under these reaction conditions, a unique repair mechanism leads to an efficient chain reaction, which is demonstrated with a broad range of anomeric O-allyl sugar derivatives including mono-, di-, and tetrasaccharides bearing various functionalities and protecting groups.
硫醇-烯加成(TEC)反应是在温和条件下连接不同分子单元的最有用的方法之一。然而,涉及弱 CH 键(烯丙基和苄基片段)的 TEC 反应很难进行,并且通常产率较低。机理研究表明,烯丙基和苄基位置的氢原子转移过程是自由基链过程效率低下的原因。这些竞争反应无法避免,但本文报道了一种通过在三乙基硼烷和儿茶酚的存在下进行反应来修复链过程的方法。在这些反应条件下,一种独特的修复机制导致了有效的链反应,这在广泛的具有各种官能团和保护基的糖衍生物的烯丙基 O-糖苷包括单糖、二糖和四糖中得到了证明。