化学
烯丙基重排
分子间力
酰胺
催化作用
立体化学
药物化学
分子
有机化学
作者
Honghui Lei,Tomislav Rovis
摘要
An efficient method for intermolecular branch-selective allylic C–H amidation has been accomplished via Ir(III) catalysis. The reaction proceeds through initial allylic C–H activation, supported by the isolation and crystallographic characterization of an allyl-Ir(III) intermediate, followed by a subsequent oxidative amidation with readily available dioxazolones as nitrenoid precursors. A diverse range of amides are successfully installed at the branched position of terminal alkenes in good yields and regioselectivities. Importantly, the reaction allows the use of amide-derived nitrenoid precursors avoiding problematic Curtius-type rearrangements.
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