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Intermolecular selective carboacylation of alkenes via nickel-catalyzed reductive radical relay

机译:镍催化还原自由基中继的烯烃分子间选择性碳酰化

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摘要

The development of catalytic carboacylation of simple olefins, which would enable the rapid construction of ketones with high levels of complexity and diversity, is very challenging. To date, the vast majority of alkene carboacylation reactions are typically restricted to single- and two-component methodologies. Here we describe a three-component carboacylation of alkenes via the merger of radical chemistry with nickel catalysis. This reaction manifold utilizes a radical relay strategy involving radical addition to an alkene followed by alkyl radical capture by an acyl-nickel complex to forge two vicinal C−C bonds under mild conditions. Excellent chemoselectivity and regioselectivity have been achieved by utilizing a pendant weakly chelating group. This versatile protocol allows for facile access to a wide range of important β-fluoroalkyl ketones from simple starting materials.
机译:简单烯烃的催化碳酰化的发展将使具有高复杂度和多样性的酮的快速构建成为可能,这是非常具有挑战性的。迄今为止,绝大多数烯烃碳酰化反应通常仅限于单组分和二组分方法。在这里,我们描述了通过自由基化学与镍催化的合并,烯烃的三组分碳酰化。该反应歧管利用自由基中继策略,其中包括向烯烃加成自由基,然后通过酰基-镍络合物捕获烷基,在温和条件下形成两个相邻的C-C键。通过利用弱螯合侧基实现了优异的化学选择性和区域选择性。这种通用的协议允许从简单的起始原料容易地获得各种重要的β-氟代烷基酮。

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