Universität Stuttgart, Institut für Organische Chemie, Pfaffenwaldring 55, 70569, Stuttgart, Germany.
Universität Stuttgart, Institut für Theoretische Chemie, Pfaffenwaldring 55, 70569, Stuttgart, Germany.
Angew Chem Int Ed Engl. 2018 Jan 26;57(5):1404-1408. doi: 10.1002/anie.201710940. Epub 2017 Dec 28.
Isoxazolinones are biologically and synthetically interesting densely functionalized heterocycles, which for a long time were not accessible in enantioenriched form by asymmetric catalysis. Next to the deficit of enantioselective methods, the functionalization of isoxazolinones is often plagued by regioselectivity issues due to the competition of various nucleophilic centers within the heterocycles. We report the first regio- and enantioselective C-allylations of isoxazolinones. These occur with high regioselectivity in favor of the linear allylation products, although Ir phosphoramidite catalysts were used, which commonly results in branched isomers. Our studies suggest that this outcome is the result of a reaction cascade via an initial regio- and enantioselective N-allylation to provide a branched allyl intermediate, followed by a spontaneous [3,3]-rearrangement resulting in chirality transfer.
异恶唑啉酮是一类具有生物和合成意义的稠合多功能杂环化合物,很长一段时间以来,通过不对称催化都无法以对映体富集的形式获得。除了缺乏对映选择性方法之外,由于杂环内各种亲核中心的竞争,异恶唑啉酮的官能化通常也受到区域选择性问题的困扰。我们报告了异恶唑啉酮的首例区域和对映选择性 C-烯丙基化反应。尽管使用了铱磷酰胺配体催化剂,通常会得到支化异构体,但这些反应以高区域选择性有利于线性烯丙基化产物。我们的研究表明,这种结果是通过反应级联产生的,首先是通过初始区域和对映选择性的 N-烯丙基化来提供支化的烯丙基中间体,然后是自发的[3,3]-重排,导致手性转移。