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用于确定电解质溶液离子常数的空间电荷极化理论。

Theory of space-charge polarization for determining ionic constants of electrolytic solutions.

作者信息

Sawada Atsushi

机构信息

Technical Center Liquid Crystals, Merck Ltd., Aikawa, Kanagawa 243-0303, Japan.

出版信息

J Chem Phys. 2007 Jun 14;126(22):224515. doi: 10.1063/1.2741254.

Abstract

A theoretical expression of the complex dielectric constant attributed to space-charge polarization has been derived under an electric field calculated using Poisson's equation considering the effects of bound charges on ions. The frequency dependence of the complex dielectric constant of chlorobenzene solutions doped with tetrabutylammonium tetraphenylborate (TBATPB) has been analyzed using the theoretical expression, and the impact of the bound charges on the complex dielectric constant has been clarified quantitatively in comparison with a theory that does not consider the effect of the bound charges. The Stokes radius of TBA+(=TPB-) determined by the present theory shows a good agreement with that determined by conductometry in the past; hence, the present theory should be applicable to the direct determination of the mobility of ion species in an electrolytic solution without the need to measure ionic limiting equivalent conductance and transport number.

摘要

在考虑离子上束缚电荷的影响下,利用泊松方程计算电场,推导了归因于空间电荷极化的复介电常数的理论表达式。使用该理论表达式分析了掺杂四丁基铵四苯基硼酸盐(TBATPB)的氯苯溶液复介电常数的频率依赖性,并与不考虑束缚电荷影响的理论相比,定量阐明了束缚电荷对复介电常数的影响。由本理论确定的TBA⁺(=TPB⁻)的斯托克斯半径与过去通过电导法测定的结果吻合良好;因此,本理论应适用于直接测定电解液中离子物种的迁移率,而无需测量离子极限当量电导和迁移数。

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