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通过具有位点选择性的六元钌环实现环状酰胺与马来酰亚胺的 C-H 键烷基化反应。

C-H Bond Alkylation of Cyclic Amides with Maleimides via a Site-Selective-Determining Six-Membered Ruthenacycle.

机构信息

Univ Rennes, CNRS, ISCR-UMR6226 , F-35000 Rennes , France.

出版信息

J Org Chem. 2019 Dec 20;84(24):16183-16191. doi: 10.1021/acs.joc.9b02690. Epub 2019 Dec 9.

Abstract

The first example of a ruthenium-catalyzed C-H bond alkylation via six-membered ruthenacycles is presented. This is disclosed for the C-H bond alkylation of biologically relevant cyclic amides with maleimide derivatives. The cyclic tertiary amide core acted as a directing group (DG) enabling formation of six-membered cycloruthenated species responsible for the control of the regio- and site selectivity of the reaction as well as the excellent functional group tolerance. Unexpectedly, cyclic amides were found to be better DGs than pyridine-containing ones or cyclic imides for this type of C-H bond functionalization.

摘要

首次提出了通过六元环钌化物实现的钌催化的 C-H 键烷基化反应的实例。该反应揭示了生物相关的环状酰胺与马来酰亚胺衍生物的 C-H 键烷基化反应。环状叔酰胺核作为导向基团 (DG),可形成六元环钌化物种,负责控制反应的区域和位点选择性,以及优异的官能团耐受性。出乎意料的是,对于这种 C-H 键官能化反应,环状酰胺被发现比含吡啶的环状酰胺或环状亚胺更适合作为 DG。

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