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将卤化钠溶液的离子特异性介电谱分解为溶剂化水和离子贡献。

Dissecting ion-specific dielectric spectra of sodium-halide solutions into solvation water and ionic contributions.

作者信息

Rinne Klaus F, Gekle Stephan, Netz Roland R

机构信息

Fachbereich Physik, Freie Universität Berlin, 14195 Berlin, Germany.

Physikalisches Institut, Universität Bayreuth, 95440 Bayreuth, Germany.

出版信息

J Chem Phys. 2014 Dec 7;141(21):214502. doi: 10.1063/1.4901927.

Abstract

Using extensive equilibrium molecular dynamics simulations we determine the dielectric spectra of aqueous solutions of NaF, NaCl, NaBr, and NaI. The ion-specific and concentration-dependent shifts of the static dielectric constants and the dielectric relaxation times match experimental results very well, which serves as a validation of the classical and non-polarizable ionic force fields used. The purely ionic contribution to the dielectric response is negligible, but determines the conductivity of the salt solutions. The ion-water cross correlation contribution is negative and reduces the total dielectric response by about 5%-10% for 1 M solutions. The dominating water dielectric response is decomposed into different water solvation shells and ion-pair configurations, by this the spectral blue shift and the dielectric decrement of salt solutions with increasing salt concentration is demonstrated to be primarily caused by first-solvation shell water. With rising salt concentration the simulated spectra show more pronounced deviations from a single-Debye form and can be well described by a Cole-Cole fit, in quantitative agreement with experiments. Our spectral decomposition into ionic and different water solvation shell contributions does not render the individual contributions more Debye-like, this suggests the non-Debye-like character of the dielectric spectra of salt solutions not to be due to the superposition of different elementary relaxation processes with different relaxation times. Rather, the non-Debye-like character is likely to be an inherent spectral signature of solvation water around ions.

摘要

通过广泛的平衡分子动力学模拟,我们确定了NaF、NaCl、NaBr和NaI水溶液的介电谱。静态介电常数和介电弛豫时间的离子特异性和浓度依赖性变化与实验结果非常吻合,这验证了所使用的经典非极化离子力场。离子对介电响应的纯离子贡献可忽略不计,但决定了盐溶液的电导率。离子 - 水交叉相关贡献为负,对于1 M的溶液,它使总介电响应降低了约5% - 10%。占主导的水介电响应被分解为不同的水溶剂化壳层和离子对构型,由此证明盐溶液随盐浓度增加的光谱蓝移和介电减量主要是由第一溶剂化壳层水引起的。随着盐浓度的升高,模拟光谱显示出与单一德拜形式更明显的偏差,并且可以通过科尔 - 科尔拟合很好地描述,这与实验在定量上是一致的。我们将光谱分解为离子和不同水溶剂化壳层贡献并没有使各个贡献更像德拜形式,这表明盐溶液介电谱的非德拜特征并非由于具有不同弛豫时间的不同基本弛豫过程的叠加。相反,非德拜特征可能是离子周围溶剂化水的固有光谱特征。

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