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Single ion hydration free energies: A consistent comparison between experiment and classical molecular simulation

机译:单离子水合自由能:实验与经典分子模拟之间的一致比较

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摘要

The determination of single ion hydration free energies is troubled by the thermodynamic constraint that only the properties of neutral pairs can be uniquely determined. As such, single ion properties depend on extrathermodynamic information, which can differ between experimental and molecular simulation measurements. This comparison is hampered by the quantum mechanical nature of the proton, the reference ion of choice for developing standard tables, and uncertainty in the experimental reference potential to which properties are measured. We revisit the methodology of Latimer [J. Chem. Phys. 7, 108 (1939)], which extracts single ion properties from neutral pair transfer free energies under the assumption that the Born equation provides an accurate description of the charging of monovalent ions. This methodology permits us to make a consistent comparison between experimental and theoretical values for single ion hydration free energies and gives insight into nonpolar contributions to the ion hydration free energy as well as the potential at the center of a hypothetical uncharged ion.
机译:单离子水合自由能的确定受到热力学约束的困扰,即只能唯一确定中性对的性质。因此,单离子性质取决于热力学外信息,在实验和分子模拟测量之间可能有所不同。质子的量子力学性质,用于开发标准表的参考离子的选择以及测量性能所依据的实验参考电势的不确定性阻碍了这种比较。我们重新审视Latimer的方法[J.化学物理[J.Am.Chem.Soc.7,108(1939)],其在假设Born方程式提供一价离子带电的准确描述的假设下,从中性对转移自由能中提取单离子性质。这种方法学使我们能够对单个离子水合自由能的实验值和理论值进行一致的比较,并深入了解对离子水合自由能的非极性贡献以及假设的不带电离子中心的电势。

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