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Solvation free energy profile of the SCN- ion across the water-1,2-dichloroethane liquid/liquid interface. A computer simulation study

机译:SCN离子在水-1,2-二氯乙烷液/液界面上的溶剂化自由能谱。计算机仿真研究

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摘要

The solvation free energy profile of a single SCN- ion is calculated across the water-1,2-dichloroethane liquid/liquid interface at 298 K by the constraint force method. The obtained results show that the free energy cost of transferring the ion from the aqueous to the organic phase is about 70 kJ/mol, The free energy profile shows a small but clear well at the aqueous side of the interface, in the subsurface region of the water phase, indicating the ability of the SCN- ion to be adsorbed in the close vicinity of the interface. Upon entrance of the SCN- ion to the organic phase a coextraction of the water molecules of its first hydration shell occurs. Accordingly, when it is located at the boundary of the two phases the SCN- ion prefers orientations in which its bulky S atom is located at the aqueous side, and the small N atom, together with its first hydration shell, at the organic side of the interface.
机译:通过约束力方法,在298 K的水-1,2-二氯乙烷液/液界面上计算了单个SCN-离子的溶剂化自由能分布。获得的结果表明,将离子从水相转移到有机相的自由能成本约为70 kJ / mol。自由能谱显示在界面的水面侧,在水的地下区域中有一个小而清晰的井。水相,表明SCN-离子在界面附近被吸附的能力。当SCN离子进入有机相时,会发生其第一水合壳中水分子的共萃取。因此,当SCN-离子位于两相的边界时,倾向于其大的S原子位于水相侧,而小N原子与其第一水合壳位于有机相侧的取向。接口。

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