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Ion mixing, hydration, and transport in aqueous ionic systems

机译:水性离子系统中的离子混合,水合和运输

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The enhancement effect on the ion mobility of fluoride (and that of chloride) in a polycationic system, as the chloride content increases, is shown to also exist in other more simple ionic systems with cations such as the cesium ion and an organic ammonium ion. As the chloride content increases, in addition to the finding that there is more unbound water associated with the cation, we also observe that the average lifetime of a hydrogen bond decreases. This change to the hydrogen bonds is correlated to significant changes to both the structural and dynamical properties of water. The more disordered water structure and faster water dynamics are hypothesized to be also responsible for the enhanced ion mobilities. Furthermore, when either the chloride content or hydration level is changed, the self-diffusion constant of each co-ion changes by almost the same factor, implying the existence of a single universal transport mechanism that determines ion mobilities. (C) 2015 AIP Publishing LLC.
机译:随着氯化物含量的增加,对聚阳离子体系中氟化物(和氯化物)的离子迁移率的增强作用也显示在其他带有阳离子的更简单的离子体系(例如铯离子和有机铵离子)中也存在。随着氯化物含量的增加,除了发现与阳离子相关的未结合水更多,我们还观察到氢键的平均寿命缩短。氢键的这种变化与水的结构和动力学性质的显着变化相关。假设水结构更混乱,水动力学更快,也可导致离子迁移率提高。此外,当氯化物含量或水合水平发生变化时,每种共离子的自扩散常数都会变化几乎相同的因子,这意味着存在确定离子迁移率的单一通用传输机制。 (C)2015 AIP Publishing LLC。

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