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可极化碘阴离子跨水 - 四氯化碳液/液界面传输的分子机制。

Molecular mechanism of transporting a polarizable iodide anion across the water-CCl4 liquid/liquid interface.

作者信息

Wick Collin, Dang Liem X

机构信息

Chemical and Material Sciences Division, Pacific Northwest National Laboratory, Richland, Washington 99352, USA.

出版信息

J Chem Phys. 2007 Apr 7;126(13):134702. doi: 10.1063/1.2717164.

Abstract

The result of transferring a polarizable iodide anion across the H2O-CCl4 liquid/liquid interface was investigated in this study. The computed transfer-free energy profile or potential of mean force exhibits a minimum near the Gibbs dividing surface. These system characteristics are similar to those found in a corresponding study of iodide transfer across the H2O-vapor interface; however, the free energy minimum was lower at the H2O-vapor interface. Molecular dynamics simulations were also carried out to compare the concentrations of NaCl, NaBr, and NaI at the H2O-vapor and H2O-CCl4 interfaces. While the concentration of bromide and iodide ions were lower at the H2O-CCl4 interface when compared to the H2O-vapor interface, the chloride ion concentrations were similar at both interfaces. Analysis of the solvation structures of iodide and chloride ions revealed that the more polarizable iodide ion was less solvated than the chloride ion at the interface. This characteristic brought the iodide ion into greater contact with CCl4, resulting in repulsive interactions with CCl4 and reducing its tendency to move to the interface.

摘要

本研究考察了可极化碘离子在水-四氯化碳液/液界面间转移的结果。计算得到的转移自由能分布或平均力势在吉布斯分界面附近呈现最小值。这些系统特性与碘离子在水-气相界面间转移的相应研究结果相似;然而,在水-气相界面自由能最小值更低。还进行了分子动力学模拟,以比较水-气相界面和水-四氯化碳界面处氯化钠、溴化钠和碘化钠的浓度。与水-气相界面相比,水-四氯化碳界面处溴离子和碘离子的浓度更低,而两个界面处氯离子浓度相似。碘离子和氯离子溶剂化结构分析表明,在界面处,可极化性更强的碘离子比氯离子溶剂化程度更低。这一特性使碘离子与四氯化碳有更多接触,导致与四氯化碳产生排斥相互作用,并降低其向界面移动的倾向。

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