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铜(I)催化的格氏试剂对原位生成的 N-磺酰基氮杂环丁烯的加成:一种适用于形成多达三个连续季碳原子的极性反转烷基化反应。

Copper(I)-catalyzed addition of Grignard reagents to in situ-derived N-sulfonyl azoalkenes: an umpolung alkylation procedure applicable to the formation of up to three contiguous quaternary centers.

机构信息

Department of Chemistry, Duke University, Durham, North Carolina 27708, USA.

出版信息

J Am Chem Soc. 2010 Apr 7;132(13):4546-7. doi: 10.1021/ja100932q.

Abstract

The alpha-alkylation of N-sulfonyl hydrazones via in situ-derived azoalkenes provides an umpolung approach to ketone alpha-alkylation that has considerable potential with regard to catalysis and the direct incorporation of functionality not amenable to the use of enolate chemistry. Herein, we describe the first Cu(I)-catalyzed addition of Grignard reagents to in situ-derived N-sulfonyl azoalkenes. This method is remarkable in its ability to deliver highly sterically hindered compounds that would be difficult or impossible to synthesize via traditional enolate chemistry, including those having up to three contiguous quaternary centers.

摘要

通过原位生成的偶氮烯烃对 N-磺酰腙进行α-烷基化反应,为酮的α-烷基化提供了一种反转策略,这种策略在催化和直接引入功能方面具有很大的潜力,而这些功能是无法通过烯醇化学来实现的。在此,我们描述了首例 Cu(I)催化的格氏试剂与原位生成的 N-磺酰基偶氮烯烃的加成反应。该方法的显著特点是能够合成高度空间位阻的化合物,这些化合物通过传统的烯醇化学方法难以或不可能合成,包括那些具有多达三个连续的季碳原子的化合物。

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