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A Redox-Responsive Complex System Based on 2D Shape-Persistent Cyclo[6]aramide and Ferrocenium

机译:基于二维形状持久性环[6]芳酰胺和二茂铁的氧化还原响应复合系统

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摘要

Electrochemical stimuli-responsive systems via macrocyclic host-guest interactions are of practical significance in realizing functions of biological materials and synthetic molecular machines. In this study, a cyclo[6]aramide-ferrocenium (Fc(+)) recognition motif was demonstrated to be a novel redox-responsive system based on two-dimensional (2D) macrocycle in organic media, in which the host strongly binds the oxidized form Fc(+) and shows no complexation towards the reduced form ferrocene. Results from cyclic voltammetric experiments clearly show the redox responsiveness of the claimed system, in sharp contrast to a control system based on an acyclic compound that contains the same number of introverted amide oxygens, highlighting the importance of the macrocyclic effect in the redox process. This study provides a rare example of using 2D hydrogen-bonded aromatic amide macrocycles to form a ferrocene-based redox-responsive inclusion complex and thus paves the way for future applications.
机译:通过大环主客体相互作用的电化学刺激响应系统在实现生物材料和合成分子机器的功能方面具有实际意义。在这项研究中,环[6]芳酰胺-二茂铁(Fc(+))识别基元被证明是基于二维(2D)大环在有机介质中的新型氧化还原响应系统,其中宿主强烈结合。氧化形式的Fc(+),且未显示对还原形式的二茂铁的络合。循环伏安实验的结果清楚地表明了所要求保护的系统的氧化还原响应性,这与基于包含相同数量内向酰胺氧的无环化合物的控制系统形成鲜明对比,突显了大环效应在氧化还原过程中的重要性。这项研究提供了一个罕见的使用二维氢键键合的芳香族酰胺大环形成二茂铁基氧化还原响应性包合物的例子,从而为将来的应用铺平了道路。

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