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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Assessing the Concentration Effect on Hydration Radii in Aqueous Solutions by Electroadsorption on a Carbon Molecular Sieve Electrode
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Assessing the Concentration Effect on Hydration Radii in Aqueous Solutions by Electroadsorption on a Carbon Molecular Sieve Electrode

机译:碳分子筛电极电涂装评估水溶液中水合半径浓度效应

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We report herein on a study of the electrical double layer capacitance of microporous activated carbon fibers electrodes as a function of the concentration of the electrolyte in aqueous solutions. The accessibility of the subnanopores in the electrode-to-ion adsorption decreases as the ionic strength of the solutions decreases, due to the increase in the hydration shell of the ions. Evaluating the concentration effect on the effective size of the ions was possible by the use of highly selective carbon molecular sieve electrodes, produced by the chemical vapor deposition (CVD) of carbon on the ACF surface, which partially closes the entries to the pores. The CVD process was carried out by the pyrolysis of benzene. This study provides a basis for the rigorous evaluation of the size of solvated ions in solutions at different levels of solvation.
机译:我们在本文中报告了微孔活性炭纤维电极的电双层电容作为水溶液中电解质浓度的函数的研究。 由于离子的水合壳的增加,电极到离子吸附中的亚孔在电极到离子吸附中的可达性降低。 通过使用通过在ACF表面上的碳的化学气相沉积(CVD)产生的高选择性碳分子筛电极来评估对离子的有效尺寸的浓度效应,部分地关闭孔隙的条目。 CVD方法由苯的热解进行。 本研究为在不同溶剂化水平的溶液中溶剂化离子大小的严格评估提供了基础。

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