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Introduction of Heterofunctional Groups onto Molecular Hexagons via Coordination-Driven Self-Assembly

机译:通过配位驱动的自组装将杂官能团引入分子六边形

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The design and synthesis of two new heterofunctional hexagons containing both redox-active ferrocenyl and host-guest crown ether functionalities has been achieved via coordination-driven self-assembly. The size and relative distribution of functional groups on the supramolecular metallacycles can be precisely controlled. The host-guest recognition properties of the crown ether moieties and their ability to complex cationic guests to form tris[2]pseudorotaxane complexes have been investigated. The electronic properties of the ferrocenyl moieties have been obtained through electrochemical studies. The functional moieties are shown to operate orthogonally, resulting in discrete supramolecular hexagons that are capable of carrying out a variety of functions both simultaneously and independently.
机译:设计和合成了两个新的同时具有氧化还原活性二茂铁基和主客体冠醚官能度的杂六边形,这是通过配位驱动的自组装实现的。可以精确控制超分子金属环上官能团的大小和相对分布。研究了冠醚部分的客体识别特性及其使阳离子客体形成三[2]假轮烷复合物的能力。二茂铁基部分的电子性质已经通过电化学研究获得。所示功能部分正交地起作用,导致离散的超分子六边形能够同时且独立地执行多种功能。

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