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Anionic effects on the structure and dynamics of water in superconcentrated aqueous electrolytes

机译:阴离子对超浓缩水电解质中水的结构和动力学的影响

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Dissolved ions in aqueous solutions are ubiquitous in a variety of systems and the addition of ions to water gives rise to dramatic effects on the properties of water. Due to a significant role of ions in the structure and dynamics of water, the ionic conditions, such as the ion type and concentration, have been considered as critical factors. Here we study the effects of anions on the structure and dynamics of water in aqueous electrolytes for various lithium salt concentrations via extensive molecular dynamics simulations. Our results demonstrate that a certain amount of salt is needed to show the different properties of water caused by the presence of different types of anion. Below the cutoff concentration, most features of water show the same characteristics in spite of the presence of different anions. In the superconcentrated limit, we find that full disruption of the hydrogen bond network between water molecules occurs for most anions investigated, indicating that the effect of the water–water interaction becomes negligible. However, a certain type of anion could enhance an ion-pairing of cations and anions and the water–water interaction remains considerable even in the superconcentrated limit. We further investigate the cationic and anionic hydration shell structures and dynamics, revealing their dependence on the anion type and the salt concentration. Finally, we observe that the anionic effects on water extend to the dynamics of water molecules, such as an anionic dependence of the onset of subdiffusive translation and anisotropic rotation.
机译:水溶液中溶解的离子在各种系统中无处不在,向水中添加离子会对水的性质产生巨大影响。由于离子在水的结构和动力学中起着重要作用,因此离子条件(例如离子类型和浓度)已被视为关键因素。在这里,我们通过广泛的分子动力学模拟研究了阴离子对各种锂盐浓度的水性电解质中水的结构和动力学的影响。我们的结果表明,需要一定量的盐才能显示由不同类型阴离子的存在引起的水的不同特性。在临界浓度以下,尽管存在不同的阴离子,水的大多数特征仍显示出相同的特征。在超浓缩极限下,我们发现大多数研究的阴离子都发生了水分子之间氢键网络的完全破坏,这表明水与水相互作用的影响可以忽略不计。但是,某种类型的阴离子可以增强阳离子和阴离子的离子对,即使在超浓缩极限下,水与水之间的相互作用仍然很明显。我们进一步研究了阳离子和阴离子水合壳的结构和动力学,揭示了它们对阴离子类型和盐浓度的依赖性。最后,我们观察到对水的阴离子作用扩展到水分子的动力学,例如亚扩散平移和各向异性旋转的开始对阴离子的依赖性。

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