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在闭环复分解反应中利用N-N键立体动力学来形成中环和大环。

Use of N-N bond stereodynamics in ring-closing metathesis to form medium-sized rings and macrocycles.

作者信息

Kim Yi Jin, Lee Daesung

机构信息

Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.

出版信息

Org Lett. 2004 Nov 11;6(23):4351-3. doi: 10.1021/ol048136f.

Abstract

A unique strategy based on double ring-closing metathesis for the formation of a 14-membered macrocyclic enamide has been developed. This strategy hinges upon the well-known stereodynamic and conformational behavior of N-substituted diacylhydrazines, which promotes an effective ring-closing metathesis of hydrazine-derived dienes and enynes to form 8- to 14-membered rings.

摘要

一种基于双环化复分解反应形成14元大环内酰胺的独特策略已经被开发出来。该策略取决于N-取代二酰肼众所周知的立体动力学和构象行为,这种行为促进了肼衍生的二烯和烯炔的有效环化复分解反应,以形成8至14元环。

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