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揭示纳米受限电解质溶液的异常介电常数

Unravelling the anomalous dielectric permittivity of nanoconfined electrolyte solutions.

作者信息

Renou Richard, Szymczyk Anthony, Ghoufi Aziz

机构信息

Institut des Sciences Chimiques de Rennes, UMR 6226 CNRS, Université de Rennes 1, 263 Avenue du Général Leclerc, 35042 Rennes, France.

出版信息

Nanoscale. 2015 Apr 21;7(15):6661-6. doi: 10.1039/c5nr00508f.

Abstract

The dielectric properties of sodium chloride solutions confined in a hydrophilic nanocavity were investigated by means of molecular dynamics simulations. Unlike what is observed in the bulk phase, three dielectric regimes were evidenced, namely an anomalous increase in the dielectric permittivity at low concentrations (with respect to confined pure water), a dielectric plateau at intermediate concentrations and finally a bulk-like behavior for salt concentrations higher than a critical value. It was shown that this peculiar behavior results from the competition between dielectric saturation due to the electric field generated by ions (which tends to lower the dielectric permittivity) and the ion-induced perturbation of pre-oriented water molecules inside the nanocavity which gain some rotational degrees of freedom (entropic contribution) leading to an increase in dipolar fluctuations responsible for the increase in the dielectric permittivity.

摘要

通过分子动力学模拟研究了限制在亲水性纳米腔中的氯化钠溶液的介电性质。与在本体相中观察到的情况不同,发现了三种介电状态,即在低浓度下(相对于限制在其中的纯水)介电常数异常增加、在中等浓度下出现介电平台,最后对于高于临界值的盐浓度呈现类似本体的行为。结果表明,这种特殊行为是由离子产生的电场导致的介电饱和(倾向于降低介电常数)与纳米腔内预取向水分子的离子诱导扰动之间的竞争引起的,预取向水分子获得了一些旋转自由度(熵贡献),导致偶极涨落增加,从而使介电常数增加。

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