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A cyclic bis[2]catenane metallacage

机译:循环至[2]猫浮糖金属脉状物

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Catenated cages represent chemistry's challenging synthetic targets because a three-dimensional assembly is necessary for their formation. Herein, a cyclic bis[2]catenane is constructed through the coordination-driven self-assembly of the interlocked bis-metallacage, by the 90° Pt(II) heteroligation of the endo-functionalized double-bridged tweezer bearing pyridyl moieties and the tetra-carboxylated linker. NMR spectrometry, X-ray crystallography and mass spectrometry confirm the formation of a cyclic bis[2]catenane with "∞"-shaped topology via a 14-component self-assembly. Particularly, reversibly responsive transformation between the bis[2]catenane and the bis-metallacage can be realized by guest exchange, concentration effect and solvent effect. This work represents a novel example of a?cyclic cage-based [2]catenane oligomer.
机译:被连接的笼子代表化学的挑战性综合目标,因为它们的形成是必要的三维组装。在此,通过互锁的双桥接的双桥镊子轴承吡啶基部分和Tetra的互锁双桥的双桥镊子的90°Pt(II)杂核,通过协调驱动的双桥接性的自组装来构建环状双氯烷。 - 羧化接头。 NMR光谱法,X射线晶体学和质谱法通过14分量自组装确认具有“∞”形拓扑的环状双[2]粘面烷的形成。特别是,通过客观交换,浓度效应和溶剂效应,可以实现双层[2] catenane和双金属腺之间的可逆响应变换。该工作代表了基于循环笼的基于循环笼的[2]萘烷低聚物的新实施例。

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