Finney Aaron R, Salvalaglio Matteo
Thomas Young Centre and Department of Chemical Engineering, University College London, London WC1E 7JE, UK.
Faraday Discuss. 2024 Feb 6;249(0):334-362. doi: 10.1039/d3fd00133d.
Surfaces are able to control physical-chemical processes in multi-component solution systems and, as such, find application in a wide range of technological devices. Understanding the structure, dynamics and thermodynamics of non-ideal solutions at surfaces, however, is particularly challenging. Here, we use Constant Chemical Potential Molecular Dynamics (CMD) simulations to gain insight into aqueous NaCl solutions in contact with graphite surfaces at high concentrations and under the effect of applied surface charges: conditions where mean-field theories describing interfaces cannot (typically) be reliably applied. We discover an asymmetric effect of surface charge on the electric double layer structure and resulting thermodynamic properties, which can be explained by considering the affinity of the surface for cations and anions and the cooperative adsorption of ions that occurs at higher concentrations. We characterise how the sign of the surface charge affects ion densities and water structure in the double layer and how the capacitance of the interface-a function of the electric potential drop across the double layer-is largely insensitive to the bulk solution concentration. Notably, we find that negatively charged graphite surfaces induce an increase in the size and concentration of extended liquid-like ion clusters confined to the double layer. Finally, we discuss how concentration and surface charge affect the activity coefficients of ions and water at the interface, demonstrating how electric fields in this region should be explicitly considered when characterising the thermodynamics of both solute and solvent at the solid/liquid interface.
表面能够控制多组分溶液体系中的物理化学过程,因此在广泛的技术设备中得到应用。然而,理解表面非理想溶液的结构、动力学和热力学尤其具有挑战性。在这里,我们使用恒化学势分子动力学(CMD)模拟,以深入了解高浓度且在施加表面电荷影响下与石墨表面接触的氯化钠水溶液:在这种条件下,描述界面的平均场理论通常无法可靠应用。我们发现表面电荷对双电层结构及由此产生的热力学性质具有不对称影响,这可以通过考虑表面对阳离子和阴离子的亲和力以及在较高浓度下发生的离子协同吸附来解释。我们表征了表面电荷的符号如何影响双电层中的离子密度和水结构,以及界面电容(双层上电势降的函数)如何在很大程度上对本体溶液浓度不敏感。值得注意的是,我们发现带负电的石墨表面会导致局限于双电层的扩展类液体离子簇的尺寸和浓度增加。最后,我们讨论浓度和表面电荷如何影响界面处离子和水的活度系数,证明在表征固/液界面处溶质和溶剂的热力学时应如何明确考虑该区域的电场。