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首页> 外文期刊>Electrochemistry communications >Electrochemical quartz crystal microbalance study of perchlorate and perrhenate anion adsorption on polycrystalline gold electrode
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Electrochemical quartz crystal microbalance study of perchlorate and perrhenate anion adsorption on polycrystalline gold electrode

机译:高氯酸根和高chlor酸根阴离子在多晶金电极上的电化学石英微平衡研究

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The electrochemical quartz crystal microbalance (EQCM) was used to study adsorption/desorption of perchlorate and perrhenate ions on a bare polycrystalline gold electrode. An electrode mass change in perrhenate solution was about double that of perchlorate. The equivalent mass of adsorbed anions (about 260 and 120 g F~(-1) respectively) suggests adsorption of perchlorate and perrhenate anions on a polycrystalline gold electrode in the double-layer region. Water molecules are partially expelled from the gold surface during the initial stages of anion adsorption. The water loss is about three times larger for perrhenate compared to perchlorate due to the bigger ionic radius (volume) of the perrhenate anion.
机译:电化学石英晶体微量天平(EQCM)用于研究高氯酸根和高r酸根离子在裸露的多晶金电极上的吸附/解吸。高r酸盐溶液中的电极质量变化约为高氯酸盐质量的两倍。当量的吸附阴离子(分别约为260和120 g F〜(-1))表明高氯酸根和高r酸根阴离子在双层区域的多晶金电极上的吸附。在阴离子吸附的初始阶段,水分子从金表面部分排出。由于高r酸盐阴离子的离子半径(体积)较大,高r酸盐的水分损失约为高氯酸盐的三倍。

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