Adsorption of 1-pentanol on bismuth single-crystal plane electrodes

被引:0
|
作者
Alar Jänes
Peep Miidla
Enn Lust
机构
[1] Institute of Physical Chemistry,
[2] University of Tartu,undefined
[3] 2 Jakobi Street,undefined
[4] EE-2400 Tartu,undefined
[5] Estonia e-mail: alar@ut.ee,undefined
[6] Institute of Applied Mathematics,undefined
[7] University of Tartu,undefined
[8] 2 Liivi Street,undefined
[9] EE-2400 Tartu,undefined
[10] Estonia,undefined
来源
Journal of Solid State Electrochemistry | 1999年 / 3卷
关键词
Key words Cyclic voltammetry; Impedance; Chronocoulometry; 1-Pentanol;
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中图分类号
学科分类号
摘要
Cyclic voltammetry, impedance and chronocoulometry have been employed for the quantitative study of 1-pentanol (n-PenOH) adsorption at the bismuth single-crystal plane | aqueous Na2SO4 solution interface. The adsorption isotherms, Gibbs energies of adsorption ΔGA∘, the limiting surface excess Γmax and other adsorption parameters, dependent on the crystallographic structure of the electrodes, have been determined. The adsorption of n-PenOH on Bi single-crystal planes is mainly physical and is limited by the rate of diffusion of organic molecules to the electrode surface. Comparison of the adsorption data for n-PenOH with 1-propanol (n-PrOH), 1-butanol (n-BuOH), cyclohexanol (CH) and 1-hexanol (n-HexOH) shows that the adsorption characteristics depend on the structure of the hydrocarbon group. The adsorption activity of adsorbates at the bismuth | solution interface increases in the sequence n-PrOH < n-BuOH < CH ≤ n-PenOH < n-HA as the adsorption activity at the air | solution interface increases. For all the compounds studied, the adsorption activity increases in the sequence of planes (111)<(001)<(011¯).
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页码:277 / 287
页数:10
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