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Dual nickel and Lewis acid catalysis for cross-electrophile coupling: the allylation of aryl halides with allylic alcohols

机译:镍和路易斯酸的双重催化用于亲电子交联:芳基卤化物与烯丙醇的烯丙基化

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摘要

Controlling the selectivity in cross-electrophile coupling reactions is a significant challenge, particularly when one electrophile is much more reactive. We report a general and practical strategy to address this problem in the reaction between reactive and unreactive electrophiles by a combination of nickel and Lewis acid catalysis. This strategy is used for the coupling of aryl halides with allylic alcohols to form linear allylarenes selectively. The reaction tolerates a wide range of functional groups (e.g. silanes, boronates, anilines, esters, alcohols, and various heterocycles) and works with various allylic alcohols. Complementary to most current routes for the C3 allylation of an unprotected indole, this method provides access to C2 and C4–C7 allylated indoles. Preliminary mechanistic experiments reveal that the reaction might start with an aryl nickel intermediate, which then reacts with Lewis acid activated allylic alcohols in the presence of Mn.
机译:控制交叉亲电子偶联反应中的选择性是一项重大挑战,特别是当一种亲电子具有更高的反应性时。我们报告了一种通用和实用的策略,通过镍和路易斯酸催化的结合来解决反应性和非反应性亲电试剂之间的反应中的这一问题。该策略用于使芳基卤化物与烯丙基醇偶联以选择性地形成线性烯丙基芳烃。该反应可耐受多种官能团(例如硅烷,硼酸酯,苯胺,酯,醇和各种杂环),并与各种烯丙基醇一起使用。与目前大多数未受保护的吲哚的C3烯丙基化路线相辅相成,此方法可提供C2和C4-C7烯丙基化吲哚的途径。初步的机理实验表明,该反应可能始于芳基镍中间体,然后该中间体在锰的存在下与路易斯酸活化的烯丙基醇反应。

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