论文标题
评估空气水接口上离子吸附的电荷不对称的远程贡献
Assessing long-range contributions to the charge asymmetry of ion adsorption at the air-water interface
论文作者
论文摘要
与阳离子相比,阴离子通常比空气水接口更有利。除了溶质大小和极化性外,不受干扰的界面的内在结构也被讨论为这种偏见的重要贡献者。在这里,我们使用计算机模拟比较了各种大小和电荷的模型溶质,从而定量地评估了水表面发挥固有电荷不对称性的作用。在此过程中,我们还评估了溶剂极化的线性响应理论是比较散装和界面离子溶剂化的热力学的合理方法。与以前关于散装离子溶剂化的作品一致,我们发现空气水界面中中性的,亚纳米溶质中心的平均静电电势敏感地取决于其半径,并且由于引入溶液的电荷,该电位的变化很大。非线性响应与散装的响应非常相似。结果,离子吸附的净非线性比散装弱,但仍然很大,可与未经扰动的界面产生的宏观非局部贡献的明显大小相媲美。对于我们研究的简单点芯模型,这些结果明显地反对将离子吸附在液体边界的分子结构固有的表面电势方面进行合理化。
Anions generally associate more favorably with the air-water interface than cations. In addition to solute size and polarizability, the intrinsic structure of the unperturbed interface has been discussed as an important contributor to this bias. Here we assess quantitatively the role that intrinsic charge asymmetry of water's surface plays in ion adsorption, using computer simulations to compare model solutes of various size and charge. In doing so, we also evaluate the degree to which linear response theory for solvent polarization is a reasonable approach for comparing the thermodynamics of bulk and interfacial ion solvation. Consistent with previous works on bulk ion solvation, we find that the average electrostatic potential at the center of a neutral, sub-nanometer solute at the air-water interface depends sensitively on its radius, and that this potential changes quite nonlinearly as the solute's charge is introduced. The nonlinear response closely resembles that of the bulk. As a result, the net nonlinearity of ion adsorption is weaker than in bulk, but still substantial, comparable to the apparent magnitude of macroscopically nonlocal contributions from the undisturbed interface. For the simple-point-charge model of water we study, these results argue distinctly against rationalizing ion adsorption in terms of surface potentials inherent to molecular structure of the liquid's boundary.