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Ion Segregation in Aqueous Solutions

机译:Ion segregation in aqueous solutions

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摘要

Microscopic structures and dynamics of aqueous salt solutions were investigated with the ultrafast vibrational energy exchange method and anisotropy measurements. In KSCN aqueous solutions of various concentrations, the rotational time constants of SCN- anions are proportional to the viscosities of the solutions. However, the reorientation dynamics of the water molecules are only slightly affected by the solution viscosity. With the addition of strongly hydrated F- anions, the rotations of both SCN- anions and water molecules slow down. With the addition of weakly hydrated I- anions, only the rotation of SCN- anions slows down with that of water molecules unaffected. Vibrational energy exchange measurements show that the separation among SCN- anions decreases with the addition of F- and increases with the addition of I-. The series of experiments clearly demonstrate that both structures and dynamics of ion and water are segregated in the strong electrolyte aqueous solutions.
机译:用超快振动能量交换法和各向异性测量研究了盐水溶液的微观结构和动力学。在各种浓度的KSCN水溶液中,SCN阴离子的旋转时间常数与溶液的粘度成正比。但是,水分子的重新取向动力学仅受溶液粘度的轻微影响。加入强水合的F-阴离子后,SCN-阴离子和水分子的旋转都会减慢。通过添加弱水合的阴离子,只有SCN阴离子的旋转变慢,而水分子的旋转不受影响。振动能量交换测量结果表明,SCN阴离子之间的分离随着F-的增加而减小,而随着I-的增加而增加。一系列实验清楚地表明,离子和水的结构和动力学都被隔离在强电解质水溶液中。

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