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催化“点击”轮烷:通向机械互锁结构的亚化学计量金属模板途径。

Catalytic "click" rotaxanes: a substoichiometric metal-template pathway to mechanically interlocked architectures.

作者信息

Aucagne Vincent, Hänni Kevin D, Leigh David A, Lusby Paul J, Walker D Barney

机构信息

School of Chemistry, University of Edinburgh, The King's Buildings, West Mains Road, Edinburgh EH9 3JJ, United Kingdom.

出版信息

J Am Chem Soc. 2006 Feb 22;128(7):2186-7. doi: 10.1021/ja056903f.

Abstract

A route to mechanically interlocked architectures that requires only a catalytic quantity of template is described. The strategy utilizes the Cu(I)-catalyzed 1,3-cycloaddition of azides with terminal alkynes. Chelating the Cu(I) to an endotopic-binding macrocycle means that the metal atom binds to the alkyne and azide in such a way that the metal-mediated bond-forming reaction occurs through the cavity of the macrocycle, forming a rotaxane. Addition of pyridine to the reaction mixture enables the Cu(I) to turn over during the reaction, permitting substoichiometric amounts of the metal to be used. The yields are very high for a rotaxane-forming reaction (up to 94% with stoichiometric Cu(I); 82% with 20 mol % of Cu(I)), and the procedure is practically simple to do (no requirement for an inert atmosphere nor dried or distilled solvents).

摘要

本文描述了一种仅需催化量模板即可构建机械互锁结构的方法。该策略利用了铜(I)催化的叠氮化物与末端炔烃的1,3 - 环加成反应。将铜(I)螯合到一个内源性结合大环上意味着金属原子以这样一种方式与炔烃和叠氮化物结合,即金属介导的成键反应通过大环的空腔发生,从而形成一个轮烷。向反应混合物中加入吡啶能使铜(I)在反应过程中循环使用,允许使用亚化学计量的金属。对于形成轮烷的反应,产率非常高(化学计量的铜(I)时高达94%;20 mol%的铜(I)时为82%),并且该过程实际操作简单(无需惰性气氛,也无需干燥或蒸馏溶剂)。

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