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A pseudorotaxane formed from a cucurbit[7] uril wheel and a bioinspired molecular axle with pH, light and redox-responsive properties

机译:由葫芦轮[7]尿丝轮和具有pH,光和氧化还原响应性的生物悬浮的分子轴形成的假体Xane

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摘要

A pH-, light- and redox-responsive flavylium-bipyridinium molecular dyad ( bioinspired in natural anthocyanins) was synthesized and employed to devise a pseudorotaxane with the macrocycle cucurbit[7] uril (CB7) in aqueous solution. The inclusion complex was characterized by UV-Vis absorption, fluorescence emission, NMR and electrochemical techniques which demonstrate formation of a stable binary complex between the dyad and CB7 both under acidic and neutral conditions. It is noteworthy that the flavylium-bipyridinium tricationic dyad is only stable in highly acidic media, undergoing a reversible hydration reaction at slightly acidic or neutral pH to give a trans-chalcone-bipyridinium dication. H-1 NMR experiments showed that in this last species the CB7 binds to the bipyridinium unit while in the tricationic species the macrocycle is positioned between the flavylium and the bipyridinium moieties. The different location of the CB7 wheel in the two dyad states allows control of the shuttling movement using light and pH stimuli that trigger the interconversion between these two species.
机译:合成了pH-,光和氧化还原响应的气味 - 双吡啶 - 双吡啶(Bioinspired)合成,并用在水溶液中用宏循环葫芦[7] URIL(CB7)设计伪藻丁烷。含有UV-Vis吸收,荧光发射,NMR和电化学技术的特征在于,在酸性和中性条件下显示在二元和CB7之间形成稳定二元络合物的形成。值得注意的是,石质岩 - 双吡啶型趋势二元仅在高度酸性培养基中稳定,在微酸性或中性pH下经历可逆水合反应,得到反式丙酮 - 双吡啶鎓二滴定。 H-1 NMR实验表明,在该最后物种中,CB7在触发物种中与双吡啶鎓单元结合,宏环位于石料和双吡啶部分之间。两个二元状态中CB7轮的不同位置允许使用触发这两个物种之间的互连的光和pH刺激来控制穿梭运动。

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