Department of Physics, Kim Il Sung University, Taesong District, Pyongyang, North Korea.
J Chem Phys. 2017 Dec 7;147(21):214702. doi: 10.1063/1.5002607.
In this paper, we study electrostatic properties between two similar or oppositely charged surfaces immersed in an electrolyte solution by using the mean-field approach accounting for solvent polarization and non-uniform size effects. Applying a free energy formalism accounting for unequal ion sizes and orientational ordering of water dipoles, we derive coupled and self-consistent equations to calculate electrostatic properties between charged surfaces. Electrostatic properties for similarly charged surfaces depend on the counterion size but not on the coion size. Moreover, electrostatic potential and osmotic pressure between similarly charged surfaces are found to be increased with increasing counterion size. On the other hand, the corresponding ones between oppositely charged surfaces are related to both sizes of positive and negative ions. For oppositely charged surfaces, the electrostatic potential, number density of solvent molecules, and relative permittivity of an electrolyte having unequal ion sizes are not symmetric about the centerline between the charged surfaces. For either case, the consideration of solvent polarization results in a decrease in the electrostatic potential and the osmotic pressure compared to the case without the effect.
本文采用考虑溶剂极化和非均匀尺寸效应的平均场方法研究了浸入电解质溶液中的两个相似或带相反电荷表面之间的静电性质。通过考虑不等离子大小和水分子偶极取向有序的自由能形式,我们推导出了计算带电表面之间静电性质的耦合和自洽方程。相似带电表面之间的静电性质取决于抗衡离子的大小,而与共离子的大小无关。此外,发现相似带电表面之间的静电势和渗透压随抗衡离子大小的增加而增加。另一方面,带相反电荷表面之间的相应性质与正离子和负离子的大小都有关。对于带相反电荷的表面,具有不等离子大小的电解质的静电势、溶剂分子数密度和相对介电常数关于带电表面之间的中心线不对称。对于任何一种情况,与不考虑溶剂极化的情况相比,考虑溶剂极化都会导致静电势和渗透压降低。