Mazur Daria A, Brandyshev Petr E, Doronin Sergey V, Budkov Yury A
Laboratory of Computational Physics, HSE University, Tallinskaya st. 34, 123458, Moscow, Russia.
School of Applied Mathematics, HSE University, Tallinskaya st. 34, 123458, Moscow, Russia.
Chemphyschem. 2024 Dec 2;25(23):e202400650. doi: 10.1002/cphc.202400650. Epub 2024 Oct 24.
In this work, we present a mean-field model that takes into account the key components of electrical double layer theory at the interface between an electrode and an electrolyte solution. The model considers short-range specific interactions between different species, including electrode-ion repulsion, the hydration of ions, dielectric saturation of solvent (water), and excluded volume (steric) interactions between species. By solving a modified Poisson-Boltzmann equation, which is derived from the grand thermodynamic potential of an inhomogeneous electrolyte solution, and using the appropriate results of quantum chemistry calculations on the hydration of ions, we can accurately approximate the differential capacitance profiles of aqueous electrolyte solutions at the boundary with a silver electrode. The specific interactions between the ions and the electrodes in the systems under consideration (aqueous solutions of NaClO and KPF) are assumed to be significantly weaker than their Coulomb interactions. A novel aspect of our research is the investigation of the impact of short-range ion-water interactions on the differential capacitance, which provides new insights into the behavior of the electrical double layer. This model has the potential to be useful for electrochemical engineers working on the development of supercapacitors and related electrochemical energy storage devices. It serves as a basis for future modeling of electrolyte systems on real electrodes, especially in scenarios where chemical ion-electrode interactions are significant.
在这项工作中,我们提出了一个平均场模型,该模型考虑了电极与电解质溶液界面处双电层理论的关键组成部分。该模型考虑了不同物种之间的短程特定相互作用,包括电极 - 离子排斥、离子水合作用、溶剂(水)的介电饱和以及物种之间的排除体积(空间位阻)相互作用。通过求解从非均匀电解质溶液的巨热力学势导出的修正泊松 - 玻尔兹曼方程,并使用关于离子水合作用的量子化学计算的适当结果,我们可以准确地近似银电极边界处水性电解质溶液的微分电容曲线。在所考虑的系统(NaClO和KPF的水溶液)中,离子与电极之间的特定相互作用被假定远弱于它们的库仑相互作用。我们研究的一个新方面是对短程离子 - 水相互作用对微分电容的影响进行研究,这为双电层的行为提供了新的见解。该模型对于致力于超级电容器及相关电化学储能装置开发的电化学工程师可能是有用的。它为未来在实际电极上对电解质系统进行建模奠定了基础,特别是在化学离子 - 电极相互作用显著的情况下。