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首页> 外文期刊>The Journal of Chemical Physics >Hydration free energies of monovalent ions in transferable intermolecular potential four point fluctuating charge water:An assessment of simulation methodology and force field performance and transferability
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Hydration free energies of monovalent ions in transferable intermolecular potential four point fluctuating charge water:An assessment of simulation methodology and force field performance and transferability

机译:可转移分子间电势四点波动电荷水中单价离子的水合自由能:模拟方法,力场性能和可转移性的评估

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摘要

Hydration free energies of nonpolarizable monovalent atomic ions in transferable intermolecular potential four point fluctuating charge(TIP4P-FQ)are computed using several commonly employed ion-water force fields including two complete model sets recently developed for use with the simple water model with four sites and Drude polarizability and TIP4P water models.A simulation methodology is presented which incorporates a number of finite-system free energy corrections within the context of constant pressure molecular dynamics simulations employing the Ewald method and periodic boundary conditions.The agreement of the computed free energies and solvation structures with previously reported results for these models in finite droplet systems indicates good transferability of ion force fields from these water models to TJP4Q-FQ even when ion polarizability is neglected.To assess the performance of the ion models in TIP4P-FQ,we compare with consensus.values for single-ion hydration free energies arising from recently improved cluster-pair estimates and a reevaluation of commonly cited,experimentally derived single-ion hydration free energies;we couple the observed consistency of these energies with a justification of the cluster-pair approximation in assigning single-ion hydration free energies to advocate the use of these consensus energies as a benchmark set in the parametrization of future ion force fields.
机译:使用几个常用的离子水力场,计算了可转移的分子间电位四点波动电荷(TIP4P-FQ)中不可极化的单价原子离子的水合自由能,其中包括最近开发的两个完整的模型集,该模型集可与具有四个位置的简单水模型一起使用。 Drude极化率和TIP4P水模型。提出了一种模拟方法,该方法在采用Ewald方法和周期边界条件的恒压分子动力学模拟的背景下,结合了一些有限系统的自由能校正。计算的自由能与溶剂化的一致性先前报道的这些模型在有限液滴系统中的结构表明,即使忽略了离子极化率,离子力场也能从这些水模型向TJP4Q-FQ传递良好的性能。为了评估TIP4P-FQ中离子模型的性能,我们将其与单离子水合游离烯的共识值最近改进的簇对估计值和对经常被引用的,实验得出的单离子水合自由能的重新评估引起的方差;我们在分配单离子水合自由能时将观察到的这些能量的一致性与簇对近似的合理性相结合提倡使用这些共识能量作为未来离子力场参数化的基准。

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