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盐水溶液界面的静电性质:可极化和不可极化离子模型的比较。

Electrostatic properties of aqueous salt solution interfaces: a comparison of polarizable and nonpolarizable ion models.

作者信息

Warren G Lee, Patel Sandeep

机构信息

Department of Chemistry and Biochemistry, University of Delaware, Newark, Delaware 19716, USA.

出版信息

J Phys Chem B. 2008 Sep 18;112(37):11679-93. doi: 10.1021/jp8038835. Epub 2008 Aug 20.

Abstract

The effects of ion force field polarizability on the interfacial electrostatic properties of approximately 1 M aqueous solutions of NaCl, CsCl, and NaI are investigated using molecular dynamics simulations employing both nonpolarizable and Drude-polarizable ion sets. Differences in computed depth-dependent orientational distributions, "permanent" and induced dipole and quadrupole moment profiles, and interfacial potentials are obtained for both ion sets to further elucidate how ion polarizability affects interfacial electrostatic properties among the various salts relative to pure water. We observe that the orientations and induced dipoles of water molecules are more strongly perturbed in the presence of polarizable ions via a stronger ionic double layer effect arising from greater charge separation. Both anions and cations exhibit enhanced induced dipole moments and strong z alignment in the vicinity of the Gibbs dividing surface (GDS) with the magnitude of the anion induced dipoles being nearly an order of magnitude larger than those of the cations and directed into the vapor phase. Depth-dependent profiles for the trace and z z components of the water molecular quadrupole moment tensors reveal 40% larger quadrupole moments in the bulk phase relative to the vapor which mimics a similar observed 40% increase in the average water dipole moment. Across the GDS, the water molecular quadrupole moments increase nonmonotonically (in contrast to the water dipoles) and exhibit a locally reduced contribution just below the surface due to both orientational and polarization effects. Computed interfacial potentials for the nonpolarizable salts yield values 20-60 mV more positive than pure water and increase by an additional 30-100 mV when ion polarizability is included. A rigorous decomposition of the total interfacial potential into ion monopole, water and ion dipole, and water quadrupole components reveals that a very strong, positive ion monopole contribution is offset by negative contributions from all other potential sources. Water quadrupole components modulated by the water density contribute significantly to the observed interfacial potential increments and almost entirely explain observed differences in the interfacial potentials for the two chloride salts. By lumping all remaining nonquadrupole interfacial potential contributions into a single "effective" dipole potential, we observe that the ratio of quadrupole to "effective" dipole contributions range from 2:1 in CsCl to 1:1.5 in NaI, suggesting that both contributions are comparably important in determining the interfacial potential increments. We also find that oscillations in the quadrupole potential in the double layer region are opposite in sign and partially cancel those of the "effective" dipole potential.

摘要

使用非极化和德鲁德极化离子集的分子动力学模拟,研究了离子力场极化率对约1M的NaCl、CsCl和NaI水溶液界面静电性质的影响。针对这两种离子集,获得了计算出的深度相关取向分布、“永久”和诱导偶极矩及四极矩分布以及界面电势的差异,以进一步阐明离子极化率如何相对于纯水影响各种盐之间的界面静电性质。我们观察到,在存在可极化离子的情况下,水分子的取向和诱导偶极受到更强的扰动,这是由于更大的电荷分离产生更强的离子双层效应所致。阴离子和阳离子在吉布斯分界面(GDS)附近均表现出增强的诱导偶极矩和强烈的z轴排列,阴离子诱导偶极矩的大小比阳离子的大近一个数量级,并指向气相。水分子四极矩张量的迹分量和zz分量的深度相关分布表明,相对于气相,本体相中四极矩大40%,这与观察到的平均水偶极矩增加40%相似。在整个GDS上,水分子四极矩非单调增加(与水偶极不同),并且由于取向和极化效应,在表面下方局部贡献减小。计算出的非极化盐的界面电势比纯水高20 - 60mV,当考虑离子极化率时,电势再增加30 - 100mV。将总界面电势严格分解为离子单极、水和离子偶极以及水四极分量,结果表明,非常强的正离子单极贡献被所有其他电势源的负贡献抵消。由水密度调制的水四极分量对观察到的界面电势增量有显著贡献,并且几乎完全解释了两种氯化物盐界面电势的观察差异。通过将所有其余非四极界面电势贡献归并为一个单一的“有效”偶极电势,我们观察到四极与“有效”偶极贡献的比率范围从CsCl中的2:1到NaI中的1:1.5,这表明两者在确定界面电势增量方面同样重要。我们还发现,双层区域中四极电势的振荡符号相反,部分抵消了“有效”偶极电势的振荡。

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