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通过铁催化的直接 C-H 键氨化反应合成复杂的杂环。

Complex N-heterocycle synthesis via iron-catalyzed, direct C-H bond amination.

机构信息

Department of Chemistry and Chemical Biology, Harvard University, 12 Oxford Street, Cambridge, MA 02138, USA.

出版信息

Science. 2013 May 3;340(6132):591-5. doi: 10.1126/science.1233701.

Abstract

The manipulation of traditionally unreactive functional groups is of paramount importance in modern chemical synthesis. We have developed an iron-dipyrrinato catalyst that leverages the reactivity of iron-borne metal-ligand multiple bonds to promote the direct amination of aliphatic C-H bonds. Exposure of organic azides to the iron dipyrrinato catalyst furnishes saturated, cyclic amine products (N-heterocycles) bearing complex core-substitution patterns. This study highlights the development of C-H bond functionalization chemistry for the formation of saturated, cyclic amine products and should find broad application in the context of both pharmaceuticals and natural product synthesis.

摘要

在现代化学合成中,对传统无反应性官能团的操作至关重要。我们开发了一种铁二吡咯烷酮催化剂,利用铁承载的金属配体多重键的反应性来促进脂肪族 C-H 键的直接氨化。将有机叠氮化物暴露于铁二吡咯烷酮催化剂中,可得到具有复杂核心取代模式的饱和环状胺产物(杂环)。这项研究强调了 C-H 键官能团化化学的发展,用于形成饱和环状胺产物,并且应该在药物和天然产物合成的背景下得到广泛应用。

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