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A Push-Button Molecular Switch

机译:一键式分子开关

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摘要

The preparation, characterization, and switching mechanism of a unique single-station mechanically switchable hetero[2]catenane are reported. The facile synthesis utilizing a “threading-followed-by-clipping” protocol features Cu^(2+)-catalyzed Eglinton coupling as a mild and efficient route to the tetrathiafulvalene-based catenane in high yield. The resulting mechanically interlocked molecule operates as a perfect molecular switch, most readily described as a “push-button” switch, whereby two discrete and fully occupied translational states are toggled electrochemically at incredibly high rates. This mechanical switching was probed using a wide variety of experimental techniques as well as quantum-mechanical investigations. The fundamental distinctions between this single-station [2]catenane and other more traditional bi- and multistation molecular switches are significant.
机译:报道了独特的单工位机械可切换杂[2]烷烃的制备,表征和切换机理。利用“穿线跟随剪切”协议的简便合成具有Cu ^(2+)催化的Eglinton偶联的特点,是温和而有效的途径,可高产率地获得基于四硫富瓦烯的链烯。最终形成的机械互锁分子可作为完美的分子开关,最容易描述为“按钮”开关,从而两个离散且完全占据的平移状态以令人难以置信的高速率电化学切换。使用各种实验技术以及量子力学研究来探索这种机械转换。这种单工位[2]烷烃与其他更传统的双工位和多工位分子开关之间的根本区别很明显。

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