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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Mechanistic Study on Electrochemical Reduction of Calix[4]quinone in Acetonitrile Containing Water
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Mechanistic Study on Electrochemical Reduction of Calix[4]quinone in Acetonitrile Containing Water

机译:含水乙腈中电化学还原杯[4]醌的机理研究

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The mechanism of electrochemical reduction of calix[4]quinones(CQs)is of vital importance,as their reduction products,calix[4]hydroquinones(CQH_8s),are known to self-assemble organic nanotubes,which in turn self-assemble novel metal nanostructures by a self-synthetic process of electrochemical reduction of solvated metals.We therefore conducted detailed studies of electrochemical reduction of CQ in rigorously dried acetonitrile(CH_3CN)and in CH_3CN containing varied amounts of water as well as perchloric acid.CQ undergoes a series of reversible one electron reductions in dry CH_3CN leading to anion radicals of each of p-benzoquinone units followed by formation of dianions.However,a series of following chemical-electrochemical reactions with protons takes place after the initial electron transfer in CH_3CN containing water.The final product of this series of reactions is identified as CQH_8 via an eight electron,eight proton reaction.The intermediate species are identified,and the reaction mechanism is elucidated using transient electrochemical,electrochemical quartz crystal microbalance and spectroelectrochemical measurements.The present results could be utilized to fine control the self-assembling reaction of nanotubes by electrochemical processes and to design electrochemically controllable nanomechanical devices.
机译:杯[4]醌(CQs)的电化学还原机理至关重要,因为杯[4]对苯二酚(CQH_8s)的还原产物已知能够自组装有机纳米管,而后者又可以自组装新型金属纳米结构通过溶剂化金属的电化学还原的自合成过程进行。干燥的CH_3CN中可逆的一个电子还原导致每个对苯醌单元的阴离子自由基,随后形成二价阴离子。然而,在含CH_3CN的水中初始电子转移后,发生了一系列随后的与质子的化学电化学反应。通过八电子,八质子反应,将该系列反应的产物鉴定为CQH_8。通过瞬态电化学,电化学石英晶体微量天平和光谱电化学测量来阐明离子机理。本研究结果可用于通过电化学过程精细控制纳米管的自组装反应,并设计可电化学控制的纳米机械装置。

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