首页> 美国卫生研究院文献>Molecules >Electrochemically Triggered Co-Conformational Switching in a 2catenane Comprising a Non-Symmetric Calix6arene Wheel and a Two-Station Oriented Macrocycle
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Electrochemically Triggered Co-Conformational Switching in a 2catenane Comprising a Non-Symmetric Calix6arene Wheel and a Two-Station Oriented Macrocycle

机译:2烷烃中的电化学触发的共构转换包括一个非对称杯6芳烃轮和两站式大环。

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摘要

Catenanes with desymmetrized ring components can undergo co-conformational rearrangements upon external stimulation and can form the basis for the development of molecular rotary motors. We describe the design, synthesis and properties of a [2]catenane consisting of a macrocycle—the ‘track’ ring—endowed with two distinct recognition sites (a bipyridinium and an ammonium) for a calix[6]arene—the ‘shuttle’ ring. By exploiting the ability of the calixarene to thread appropriate non-symmetric axles with directional selectivity, we assembled an oriented pseudorotaxane and converted it into the corresponding oriented catenane by intramolecular ring closing metathesis. Cyclic voltammetric experiments indicate that the calixarene wheel initially surrounds the bipyridinium site, moves away from it when it is reduced, and returns in the original position upon reoxidation. A comparison with appropriate model compounds shows that the presence of the ammonium station is necessary for the calixarene to leave the reduced bipyridinium site.
机译:具有不对称环成分的链烯在外部刺激下会发生共构象重排,并可能成为开发分子旋转马达的基础。我们描述了由大环(“轨道”环)组成的[2]烷烃的设计,合成和性质,该环具有两个不同的识别杯(6芳烃)的识别位点(联吡啶和铵)(梭)环。通过利用杯芳烃以适当的方向选择性地穿入合适的非对称轴的能力,我们组装了一个定向的拟轮烷,并通过分子内闭环复分解反应将其转化为相应的定向链烷。循环伏安法实验表明,杯芳烃轮最初围绕联吡啶鎓位点,还原时从联吡啶鎓位点移开,并在重新氧化时返回原始位置。与合适的模型化合物的比较表明,铵杯的存在对于杯芳烃离开还原的联吡啶鎓位点而言是必需的。

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