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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Influence of a Counterion on the Ion Atmosphere of an Anion: A Molecular Dynamics Study of LiX and CsX (X = F-, Cl-, I-) in Methanol
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Influence of a Counterion on the Ion Atmosphere of an Anion: A Molecular Dynamics Study of LiX and CsX (X = F-, Cl-, I-) in Methanol

机译:抗衡离子对阴离子的离子气氛的影响:甲醇中LiX和CsX(X = F-,Cl-,I-)的分子动力学研究

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We report molecular dynamics (MD) simulations to explore the influence of a counterion on the structure and dynamics of cationic and anionic solvation shells for various ions in methanol at 298 K. We show that the variation in ionic size of either the cation or the anion in an ion pair influences the solvation structure of the other ion as well as the diffusivity in an electrolyte solution of methanol. The extent of ionic association between the cation and its counteranion of different ionic sizes has been investigated by analyzing the radial distribution functions (RDFs) and the orientation of methanol molecules in the first solvation shell (FSS) of ions. It is shown that the methanol in the FSS of the anion as well the cation exhibit quite different radial and orientational structures as compared to methanol which lie in the FSS of either the anion or the cation but not both. We find that the coordination number (CN) of F-, Cr-, and I- ions decreases with increasing size of the anion which is contrary to the trend reported for the anions in H2O. The mean residence time (MRT) of methanol molecules in the FSS of ions has been calculated using the stable states picture (SSP) approach. It is seen that the ion-counterion interaction has a considerable influence on the MRT of methanol molecules in the FSS of ions. We also discuss the stability order of the ion-counterion using the potentials of mean force (PMFs) for ion pairs with ions of different sizes. The PMF plots reveal that the Li+-F- pair (small-small) is highly stable and the Li+-I- pair is least stable (small-large) in electrolyte solutions.
机译:我们报告了分子动力学(MD)模拟,以探讨抗衡离子对298 K的甲醇中各种离子的阳离子和阴离子溶剂化壳的结构和动力学的影响。我们显示了阳离子或阴离子的离子大小的变化离子对中的离子影响另一个离子的溶剂化结构以及在甲醇电解质溶液中的扩散率。通过分析离子的第一溶剂化壳(FSS)中的径向分布函数(RDF)和甲醇分子的取向,研究了阳离子与不同离子尺寸的抗衡阴离子之间的离子缔合程度。结果表明,与位于阴离子或阳离子的FSS中而不是同时位于两者的FSS中的甲醇相比,阴离子的FSS和阳离子中的甲醇均表现出截然不同的径向和取向结构。我们发现F-,Cr-和I-离子的配位数(CN)随着阴离子尺寸的增加而降低,这与报道的H2O中阴离子的趋势相反。甲醇分子在离子FSS中的平均停留时间(MRT)已使用稳态图(SSP)方法进行了计算。可以看出,离子-抗衡离子相互作用对离子FSS中甲醇分子的MRT有很大影响。我们还讨论了使用平均力(PMFs)对具有不同尺寸离子的离子对进行离子抗衡的稳定性顺序。 PMF图显示,在电解质溶液中,Li + -F-对(小到小的)是高度稳定的,而Li + -I-对则是最不稳定的(小到大)。

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