论文标题

薄水膜的介电响应:热力学透视

Dielectric response of thin water films: A thermodynamic perspective

论文作者

Cox, Stephen J., Geissler, Phillip L.

论文摘要

极性液体的表面为带电溶质的溶剂化和组织提供了一种特殊的环境,这与重要方式不同于散装行为。这些差异促使许多尝试以空间变化的介电介电常数来理解水界面处的静电反应,通常得出结论,界面水的介电常数明显低于散装液体中的介电常数。然而,这种分析在界面异质性的短长度上的潜在非本地响应的潜在非本地性质变得复杂。在这里,我们通过采用热力学方法来解决薄水膜的问题。使用分子模拟,我们计算溶剂对充电平行板电容器的可逆工作的贡献。我们与简单的介电连续模型发现了良好的一致性,该模型即使对于非常薄($ \ sim 1 $ nm)膜,它都会一直呈现到液体边界的批量介电介电常数。这种比较需要仔细注意液体和蒸气之间的介电边界的位置,这也通过介电成像实验解决了明显的差异。

The surface of a polar liquid presents a special environment for the solvation and organization of charged solutes, which differ from bulk behaviors in important ways. These differences have motivated many attempts to understand electrostatic response at aqueous interfaces in terms of a spatially varying dielectric permittivity, typically concluding that the dielectric constant of interfacial water is significantly lower than in the bulk liquid. Such analyses, however, are complicated by the potentially nonlocal nature of dielectric response over the short length scales of interfacial heterogeneity. Here we circumvent this problem for thin water films by adopting a thermodynamic approach. Using molecular simulations, we calculate the solvent's contribution to the reversible work of charging a parallel plate capacitor. We find good agreement with a simple dielectric continuum model that assumes bulk dielectric permittivity all the way up to the liquid's boundary, even for very thin ($\sim 1$ nm) films. This comparison requires careful attention to the placement of dielectric boundaries between liquid and vapor, which also resolves apparent discrepancies with dielectric imaging experiments.

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