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自模板合成酰胺类轮烷和轮烷配位聚合物的形成。

Self-templated synthesis of amide catenanes and formation of a catenane coordination polymer.

机构信息

Department of Chemistry, Imperial College London, Molecular Sciences Research Hub, 80 Wood Lane, London W12 0BZ, UK.

出版信息

Org Biomol Chem. 2019 Feb 27;17(9):2442-2447. doi: 10.1039/c9ob00107g.

Abstract

A self-templation strategy was used to synthesise isophthalamide [2]catenanes of various sizes in up to 51% yield without the need for metal ions as templates or mediators of covalent bond formation. Using this strategy a bis-monodentate catenane was prepared incorporating exohedral pyridine units. Upon complexation of this ligand with AgOTf a one-dimensional coordination polymer was obtained in the solid state in which both macrocycles of the catenane are involved in binding to the metal nodes, resulting in a rare example of a coordination assembly in which mechanical bonds are incorporated into the structure backbone.

摘要

一种自模板策略被用于合成不同大小的异酞酰胺[2]索烃,最高产率可达 51%,而无需使用金属离子作为模板或共价键形成的介体。使用这种策略,制备了一种包含外接吡啶单元的双单齿索烃。当这种配体与 AgOTf 络合时,在固态中得到了一维配位聚合物,其中索烃的两个大环都参与与金属节点的结合,导致了一个罕见的例子,其中机械键被纳入结构骨架中。

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