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钯催化的去饱和介导的 C(sp^3)-H/炔烃偶联反应实现环己酮的分子内 β-烯丙基化。

Intramolecular β-Alkenylation of Cyclohexanones via Pd-Catalyzed Desaturation-Mediated C(sp)-H/Alkyne Coupling.

机构信息

Department of Chemistry, University of Chicago, Chicago, Illinois 60637, United States.

College of Pharmacy, Third Military Medical University, Chongqing 400038, China.

出版信息

J Am Chem Soc. 2020 May 13;142(19):8962-8971. doi: 10.1021/jacs.0c02654. Epub 2020 Apr 30.

Abstract

Site-selective C-C bond formation through the direct coupling of C(sp)-H bonds with unsaturated hydrocarbons represents an atom-economical and redox-neutral way to functionalize chemically inert positions, such as those β to a carbonyl group. While most existing β-functionalization methods utilize a directing group (DG) strategy, here we report a Pd-catalyzed intramolecular β-alkenylation of ketones using alkynes as the coupling partner without the aid of DGs. Mediated by a ketone desaturation process, the reaction is redox-neutral and avoids using strong acids or bases. The resulting -5,6-fused bicycles can be diversely derivatized with excellent selectivity. Mechanistic studies imply an unusual "hydride-transfer" chain-like pathway, which involves the cyclometalation of an enyne intermediate and protonation of the resulting Pd enolate followed by an intermolecular hydride transfer through the desaturation of another substrate.

摘要

通过 C(sp)-H 键与不饱和烃的直接偶联实现的位点选择性 C-C 键形成是一种原子经济且氧化还原中性的方法,可对化学惰性位置进行功能化,例如羰基β位。尽管大多数现有的β官能化方法都利用导向基团(DG)策略,但在这里,我们报告了一种使用炔烃作为偶联伙伴的 Pd 催化的酮的分子内β-烯丙基化反应,而无需 DG 的帮助。在酮去饱和过程的介导下,该反应是氧化还原中性的,并且避免使用强酸或强碱。所得的-5,6-稠合双环可以通过优异的选择性进行多种衍生化。机理研究表明存在一种不寻常的“氢化物转移”链状途径,其中涉及烯炔中间体的环金属化以及生成的 Pd 烯醇化物的质子化,随后通过另一个底物的去饱和进行分子间氢化物转移。

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