Onuki Akira
Department of Physics, Kyoto University, Kyoto, 606-8502, Japan.
Eur Phys J E Soft Matter. 2024 Jan 11;47(1):3. doi: 10.1140/epje/s10189-023-00398-0.
We investigate electric-field effects in dilute electrolytes with nonlinear polarization. As a first example of such systems, we add a dipolar component with a relatively large dipole moment [Formula: see text] to an aqueous electrolyte. As a second example, the solvent itself exhibits nonlinear polarization near charged objects. For such systems, we present a Ginzburg-Landau free energy and introduce field-dependent chemical potentials, entropy density, and stress tensor, which satisfy general thermodynamic relations. In the first example, the dipoles accumulate in high-field regions, as predicted by Abrashikin et al.[Phys.Rev.Lett. 99, 077801 (2007)]. Finally, we consider the case, where Bjerrum ion pairs form a dipolar component with nonlinear polarization. The Bjerrum dipoles accumulate in high-field regions, while field-induced dissociation was predicted by Onsager [J. Chem. Phys.2, 599 (1934)]. We present an expression for the field-dependent association constant K(E), which depends on the field strength nonmonotonically.
我们研究具有非线性极化的稀电解质中的电场效应。作为此类系统的第一个例子,我们向水性电解质中添加具有相对较大偶极矩[公式:见正文]的偶极成分。作为第二个例子,溶剂本身在带电物体附近表现出非线性极化。对于此类系统,我们给出一个金兹堡 - 朗道自由能,并引入与场相关的化学势、熵密度和应力张量,它们满足一般的热力学关系。在第一个例子中,偶极子如阿布拉希金等人所预测的那样[《物理评论快报》99,077801 (2007)]在高场区域积累。最后,我们考虑比耶鲁姆离子对形成具有非线性极化的偶极成分的情况。比耶鲁姆偶极子在高场区域积累,而场致离解是由昂萨格预测的[《化学物理杂志》2,599 (1934)]。我们给出与场相关的缔合常数K(E)的表达式,它非单调地依赖于场强。