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Molecular mechanism of the adsorption process of an iodide anion into liquid-vapor interfaces of water-methanol mixtures

机译:碘化物阴离子在水-甲醇混合物的液-汽界面吸附过程的分子机理

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摘要

To enhance our understanding of the molecular mechanism of ion adsorption to the interface of mixtures, we systematically carried out a free energy calculations study involving the transport of an iodide anion across the interface of a water-methanol mixture. Many body affects are taken into account to describe the interactions among the species. The surface propensities of I~- at interfaces of pure water and methanol are well understood. In contrast, detailed knowledge of the molecular level adsorption process of I ~- at aqueous mixture interfaces has not been reported. In this paper, we explore how this phenomenon will be affected for mixed solvents with varying compositions of water and methanol. Our potential of mean force study as function of varying compositions indicated that I~- adsorption free energies decrease from pure water to pure methanol but not linearly with the concentration of methanol. We analyze the computed density profiles and hydration numbers as a function of concentrations and ion positions with respect to the interface to further explain the observed phenomenon.
机译:为了增强我们对离子吸附到混合物界面的分子机理的理解,我们系统地进行了自由能计算研究,涉及碘化物阴离子在水-甲醇混合物界面上的迁移。考虑到许多身体影响来描述物种之间的相互作用。在纯水和甲醇的界面上,I〜-的表面性质已广为人知。相比之下,尚未报道有关I〜-在水性混合物界面处分子水平吸附过程的详细知识。在本文中,我们探讨了对于水和甲醇组成不同的混合溶剂,该现象将如何受到影响。我们研究平均力作为不同组成的函数的潜力表明,I〜-吸附自由能从纯水到纯甲醇逐渐降低,但不随甲醇浓度线性变化。我们分析计算出的密度分布和水合数与相对于界面的浓度和离子位置的关系,以进一步解释观察到的现象。

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