He Tao, Wang Guoqiang, Long Peng-Wei, Kemper Sebastian, Irran Elisabeth, Klare Hendrik F T, Oestreich Martin
Institut für Chemie, Technische Universität Berlin Strasse des 17. Juni 115 10623 Berlin Germany
Chem Sci. 2020 Oct 29;12(2):569-575. doi: 10.1039/d0sc05553k.
A trityl-cation-initiated annulation of benzyl-substituted vinylcyclopropanes (VCPs) with hydrosilanes is reported. Two Si-C(sp) bonds and one C(sp)-C(sp) bond are formed in this process where an intramolecular 6- Friedel-Crafts alkylation of a silylium-ion-activated cyclopropane ring is the rate-determining key step. The reaction mechanism is proposed based on computations and is in agreement with experimental observations. The new reaction leads to an unprecedented silicon-containing 6/6/5-fused ring system. A phenethyl-substituted VCP derivative yields another unknown tricycle having 6/6/6 ring fusion by reacting in a related but different way involving a 6- ring closure.
据报道,三苯甲基阳离子引发苄基取代的乙烯基环丙烷(VCPs)与硅烷发生环化反应。在此过程中形成了两个Si-C(sp)键和一个C(sp)-C(sp)键,其中硅鎓离子活化的环丙烷环的分子内6-傅克烷基化是速率决定关键步骤。基于计算提出了反应机理,该机理与实验观察结果一致。这种新反应生成了前所未有的含硅6/6/5稠环体系。一种苯乙基取代的VCP衍生物通过以一种涉及6-环闭合的相关但不同的方式反应,生成了另一种具有6/6/6环稠合的未知三环化合物。