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Asymmetric cascade reaction sequences via chiral lithiated intermediates

机译:通过手性锂化中间体的不对称级联反应序列

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The (-)-sparteine-mediated enantioselective intermolecular carbolithiation of (E)-2-propenylarylamines allows for the generation of chiral lithiated intermediates which have broad synthetic potential. These intermediates have been exploited in a series of further in situ reactions with electrophiles to generate a collection of products each containing a common stereogenic center. The stereogenic center, formed in high enantiomeric ratio in the first carbolithiation step, is carried through the cascade reaction sequence to the final products and is independent of electrophile used. The methodology is demonstrated by, the synthesis of structurally diverse chiral anilines, indoles, and indolones all with an er of 92:8 ( I). The heterocyclic syntheses involve an enantioselective alkene carbolithiation and subsequent trapping of the intermediate organolithium with a suitable electrophile, followed by an in situ ring closure and dehydration to generate the indole or indolone rings.
机译:(E)-2-丙烯基介导的(E)-2-丙烯基芳基胺的对映选择性分子间碳甲酸酯化允许产生具有广泛合成潜力的手性锂化中间体。这些中间体已在与亲电试剂的一系列进一步原位反应中得到利用,以生成一系列产物,每个产物均包含一个共同的立体异构中心。在第一步碳烷化步骤中以高对映体比例形成的立体异构中心,通过级联反应序列传递至最终产物,并且与所用的亲电子试剂无关。该方法通过结构多样的手性苯胺,吲哚和吲哚酮的合成得到了证明,所有方法的误差均为92:8(I)。杂环合成包括对映选择性烯烃碳环化和随后用合适的亲电试剂捕获中间有机锂,随后进行原位闭环和脱水以生成吲哚或吲哚酮环。

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