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多价三吡啶配体构筑金属超分子大环套大环和蛛网结构的简便方法。

Facile Self-Assembly of Metallo-Supramolecular Ring-in-Ring and Spiderweb Structures Using Multivalent Terpyridine Ligands.

机构信息

Department of Chemistry, National Taiwan University, No.1, Sec. 4, Roosevelt Rd., Taipei, 10617 (Taiwan).

出版信息

Angew Chem Int Ed Engl. 2015 May 18;54(21):6231-5. doi: 10.1002/anie.201501507. Epub 2015 Apr 7.

Abstract

A series of metallo-supramolecular ring-in-ring structures was generated by assembling Cd(II) ions and the multivalent terpyridine ligands (L(1-3)) composed of one 60°-bent and two 120°-bent bis(terpyridine)s with varying alkyl linker lengths. The mechanistic study for the self-assembly process excluded an entropically templated pathway and showed that the intramolecularly complexed species is the key intermediate leading to ring-in-ring formation. The next-generation superstructure, a spiderweb, was produced in quantitative yield using the elongated decakis(terpyridine) ligand (L(5)).

摘要

通过组装 Cd(II) 离子和由一个 60°弯曲和两个 120°弯曲的双(三联吡啶)组成的多价三吡啶配体(L(1-3)),形成了一系列金属超分子环中环结构,其中多价三吡啶配体的烷基连接链长度不同。对自组装过程的机理研究排除了熵模板途径,并表明分子内络合的物质是导致环中环形成的关键中间体。使用拉长的 decakis(三联吡啶)配体(L(5)),以定量产率生成了下一代超结构,即蜘蛛网。

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