首页> 外文期刊>The Journal of Organic Chemistry >Crown Ether Vinylogous Tetrathiafulvalene Receptors: Complexation Interference on the Molecular Movements Triggered by Electron Transfer
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Crown Ether Vinylogous Tetrathiafulvalene Receptors: Complexation Interference on the Molecular Movements Triggered by Electron Transfer

机译:冠醚长源四硫富瓦烯受体:电子转移引发的分子运动的复合干扰。

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The synthesis of a series of crown ether substituted vinylogous tetrathiafulvalenes (TTFVs) has been carried out through oxidative coupling of bisdithiafulvenes. These new receptors have been fully characterized using electrochemical, spectroelectrochemical, and molecular modeling experiments. These studies show that, upon oxidation, either a clip movement (TTFVs 3a,b) or a stretch movement (TTFV 3c) occurs, depending on the length of the crown ether chains. Preliminary electrochemical studies, undertaken on TTFV 3c in dichloromethane, show a little shift of the first standard oxidation potential toward more positive values upon addition of the Pb~(2+) ion, but a considerable variation of the electron-transfer kinetics. This result introduces an interesting concept for the preparation of sensors not based on thermodynamic variations but on kinetic modifications of the electron transfer.
机译:一系列冠醚取代的乙烯基四硫富富瓦烯(TTFVs)的合成已通过双二硫富富烯的氧化偶联进行。这些新受体已使用电化学,光谱电化学和分子建模实验进行了全面表征。这些研究表明,在氧化时,取决于冠醚链的长度,会发生剪切运动(TTFV 3a,b)或拉伸运动(TTFV 3c)。在二氯甲烷中的TTFV 3c上进行的初步电化学研究显示,添加Pb〜(2+)离子后,第一标准氧化电位向更正值的偏移很小,但电子转移动力学却发生了相当大的变化。该结果为传感器的制备提出了一个有趣的概念,该概念不基于热力学变化,而是基于电子传递的动力学修饰。

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