Baussière Floriane, Haugland Marius M
Department of Chemistry, UiT The Arctic University of Norway, 9037 Tromsø, Norway.
J Org Chem. 2023 Sep 1;88(17):12451-12463. doi: 10.1021/acs.joc.3c01213. Epub 2023 Aug 15.
Radical group transfer is a powerful tool for the formation of C-C bonds. These processes typically involve radical addition to C-C π bonds, followed by fragmentation of the resulting cyclic intermediate. Despite the advantageous lability of organosilanes in this context, silicon-tethered radical acceptor groups have remained underexplored in radical group transfer reactions. We report a general photoredox-catalyzed protocol for the radical group transfer of vinyl and alkynyl silanes onto sp carbons, using activated and unactivated iodides as radical precursors. Our method displays high diastereoselectivity and excellent functional group tolerance, and enables direct formation of group transfer products by in situ ring opening. Mechanistic investigations revealed that the reaction proceeds via an unusual dual catalytic cycle, resulting in an overall redox-neutral process.
自由基基团转移是形成碳-碳键的有力工具。这些过程通常涉及自由基加成到碳-碳π键上,随后所得环状中间体发生碎片化。尽管在这种情况下有机硅烷具有有利的不稳定性,但在自由基基团转移反应中,硅连接的自由基受体基团仍未得到充分研究。我们报道了一种通用的光氧化还原催化方法,用于将乙烯基和炔基硅烷自由基基团转移到sp碳上,使用活化和未活化的碘化物作为自由基前体。我们的方法具有高非对映选择性和出色的官能团耐受性,并能够通过原位开环直接形成基团转移产物。机理研究表明,该反应通过一个不寻常的双催化循环进行,从而产生一个整体氧化还原中性的过程。