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首页> 外文期刊>Angewandte Chemie >Synthesis of Homoallylic Alcohols with Acyclic Quaternary Centers through Co-III-Catalyzed Three-Component C-H Bond Addition to Internally Substituted Dienes and Carbonyls
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Synthesis of Homoallylic Alcohols with Acyclic Quaternary Centers through Co-III-Catalyzed Three-Component C-H Bond Addition to Internally Substituted Dienes and Carbonyls

机译:通过CO-III催化的三组分C-H键合与内部取代的二烯和羰基的共循环三组分中心合成具有无循环季醇的醇醇

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摘要

An efficient Co-III-catalyzed three-component strategy to prepare homoallylic alcohols containing acyclic quaternary centers is disclosed. This transformation enables the introduction of two C-C sigma bonds through C-H bond activation and sequential addition to internally substituted dienes and a wide range of aldehydes and activated ketones. Isoprene and other internally monosubstituted dienes are effective inputs, with the reaction proceeding with high diastereoselectivity for those substrate combinations that result in more than one stereogenic center. Moreover, the opposite relative stereochemistry can be achieved by employing 1,2-disubstituted dienes. A mechanism for the transformation is proposed based upon the relative stereochemistry of the products and studies with isotopically labeled starting materials.
机译:公开了一种高效的Co-III催化的三分组分策略,以制备含环循环季中心的邻级醇。 该转化能够通过C-H键活化和内部取代的二烯的顺序添加和各种醛和活化酮的顺序添加,使得能够引入两个C-Cσ键。 异戊二烯和其他内部单位软溶剂的二烯是有效的输入,反应对那些产生多于一个立体中心的基质组合具有高的非对映选择性。 此外,通过使用1,2多取代的二烯可以实现相对的相对立体化学。 基于产品的相对立体化学和具有同位素标记的原料的研究提出了一种转化机制。

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