Department of Chemistry, University of California, Berkeley, CA 94720, USA.
Science. 2014 Feb 21;343(6173):853-7. doi: 10.1126/science.1248042.
Regioselective C-H functionalization of arenes has widespread applications in synthetic chemistry. The regioselectivity of these reactions is often controlled by directing groups or steric hindrance ortho to a potential reaction site. Here, we report a catalytic intermolecular C-H silylation of unactivated arenes that manifests very high regioselectivity through steric effects of substituents meta to a potential site of reactivity. The silyl moiety can be further functionalized under mild conditions but is also inert toward many common organic transformations, rendering the silylarene products useful building blocks. The remote steric effect that we observe results from the steric properties of both the rhodium catalyst and the silane.
芳烃的区域选择性 C-H 官能化在合成化学中有着广泛的应用。这些反应的区域选择性通常通过导向基团或潜在反应位点邻位的空间位阻来控制。在这里,我们报道了一种未活化芳烃的催化分子间 C-H 硅烷化反应,该反应通过潜在反应位点的取代基的空间位阻表现出非常高的区域选择性。硅烷基部分可以在温和条件下进一步官能化,但对许多常见的有机转化反应也不活跃,使硅芳基产物成为有用的构建块。我们观察到的远程空间效应来自于铑催化剂和硅烷的空间性质。