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Impedance study of adsorption of chloride ions in ethanol on Bi(001) single crystal plane

机译:Bi(001)单晶面上乙醇中氯离子吸附的阻抗研究

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The impedance spectra for Bi(001) single crystal plane in 0.1, 0.02 and 0.003 M LiCl solutions in ethanol have been measured. It was found that reproducible experimental data for Bi electrode in ethanol solutions could be obtained at ac frequencies between 0.1 and 10 000 Hz and electrode potentials from -1.6 to -0.2 V (vs saturated calomel electrode). Outside this potential region, faradaic processes were detected. By fitting the experimental data to various equivalent circuits it was found that the Frumkin-Melik-Gaikazyan model yields good fit in almost the whole potential range studied. Using this model the dependences of "true" and adsorption capacitance as well as diffusion resistance on electrode potential have been obtained. The ionic charge due to the specific adsorption has been obtained using the mixed-electrolyte method for both electrode charge and electrode potential as the independent electric variables. The Gibbs energy of adsorption of Cl- ions has been calculated using a simple virial adsorption isotherm. It was found that the adsorption of Cl- anion increases in the order methanol < ethanol < propan-2-ol. It was found that on the Bi( 001) plane the electrosorption valency has a constant value in the potential range studied. It was concluded that the formed effective surface dipole is significantly screened by the solvent molecules and the metal electron gas. [References: 33]
机译:测量了Bi(001)单晶面在0.1、0.02和0.003 M的LiCl乙醇溶液中的阻抗谱。发现在0.1至10000 Hz的交流频率和-1.6至-0.2 V的电极电势(相对于饱和甘汞电极)下,可以在乙醇溶液中获得Bi电极的可再现实验数据。在此潜在区域之外,检测到法拉第过程。通过将实验数据拟合到各种等效电路,发现Frumkin-Melik-Gaikazyan模型在几乎整个研究的电位范围内都能产生良好的拟合。使用该模型,已经获得了“真实”和吸附电容以及扩散电阻对电极电势的依赖性。对于电极电荷和电极电势作为独立的电变量,使用混合电解质方法已经获得了由于特定吸附而产生的离子电荷。使用简单的病毒吸附等温线计算出了吸附Cl-离子的吉布斯能量。发现Cl-离子的吸附按甲醇<乙醇<丙-2-醇的顺序增加。发现在Bi(001)平面上,电吸附化合价在所研究的电位范围内具有恒定值。结论是,形成的有效表面偶极子被溶剂分子和金属电子气显着屏蔽。 [参考:33]

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