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使用可裂解的配位环作为保护基团,合成一种轴上含有比穿入大环更多螯合基团的轮烷。

Use of cleavable coordinating rings as protective groups in the synthesis of a rotaxane with an axis that incorporates more chelating groups than threaded macrocycles.

机构信息

Laboratoire de Chimie Organo-Minérale, Institut de Chimie, Université de Strasbourg-CNRS/UMR7177, 4 rue Blaise Pascal 67070 Strasbourg-Cedex (France).

出版信息

Chemistry. 2013 Sep 16;19(38):12815-23. doi: 10.1002/chem.201301717. Epub 2013 Aug 9.

Abstract

A new methodology allowing preparation of a linear "unsaturated" [3]rotaxane consisting of an axis incorporating more coordination sites than threaded rings was developed. It was based on the preliminary synthesis of a "saturated" [5]rotaxane consisting of a four-chelating site axis threaded through four macrocyclic components, two of them being cleavable rings incorporating a lactone function and the two others being "secure" non-cleavable rings. The stoppering reaction was based on click chemistry. Subsequently, cleavage and removal of the two lactone-containing macrocycles from the [5]rotaxane in basic medium afforded the desired "unsaturated" [3]rotaxane in quantitative yield.

摘要

一种新的方法学允许制备一种线性“不饱和”[3]轮烷,该轮烷由一个包含比穿线环更多配位位点的轴组成。它是基于初步合成一种“饱和”[5]轮烷,该轮烷由一个四配位位点的轴穿过四个大环组件组成,其中两个是可裂解的环,包含内酯官能团,另外两个是“稳定”的不可裂解的环。塞子反应基于点击化学。随后,在碱性介质中从[5]轮烷中裂解和除去两个含内酯的大环,以定量产率得到所需的“不饱和”[3]轮烷。

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