首页> 外文期刊>Bulletin of the Chemical Society of Japan >A Parameterization of Empirical Sigma Enlarging Bridge Correction of Kovalenko-Hirata Closure in Ornstein-Zernike Theory for Lennard-Jones Fluids
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A Parameterization of Empirical Sigma Enlarging Bridge Correction of Kovalenko-Hirata Closure in Ornstein-Zernike Theory for Lennard-Jones Fluids

机译:山谷 - Zernike对Lennard-Jones流体的奥恩斯坦 - Zernike封闭桥梁桥梁校正桥梁校正的参数化

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We report the parameter values included in the sigma enlarging bridge (SEB) function for two-component Lennard-Jones fluids within the Ornstein-Zernike (OZ) integral equation framework, which was first proposed in our previous study [T. Miyata, Y. Ebato, J. Molec. Liquids, 217 (2016) 75] to improve the accuracy of the solvation free energy (SFE). In this article, we consider a wide range of thermodynamic states, with varying the solute size and the solute-solvent interaction strength. The SEB parameter was evaluated via the least square fitting of the first rising region of the radial distribution function obtained from OZ theory to that from molecular dynamics simulation. The SEB function was applied to both the hypernetted chain (HNC) and Kovalenko-Hirata (KH) closures. It is found that the SEB parameter increases monotonically with the solute size, whereas it hardly depends on the solute-solvent interaction strength. Also, the performance of bare HNC, bare KH, Percus-Yevick, and Verlet-modified closures are also examined, to report the relationship between the solute volume and the error of the SFE obtained from OZ theory. We found that the SFE errors under both HNC and KH closures are not necessarily proportional to the solute volume.
机译:我们报告了在我们之前的研究中首次提出的两组分Lennard-Jones流体中包括的SIGMA放大桥(SEB)功能中包含的参数值,这是在我们之前的研究中提出的[T. Miyata,Y. ebato,J. SOM。液体,217(2016)75]以提高溶剂化自由能(SFE)的准确性。在本文中,我们考虑了各种热力学状态,改变溶质尺寸和溶质 - 溶剂相互作用强度。通过从OZ理论获得的径向分布函数的第一上升区域的最小二乘拟合来评估SEB参数,从OZ理论获得到来自分子动力学模拟。将SEB功能应用于高纳链(HNC)和Kovalenko-Hirata(KH)封闭。发现SEB参数随着溶质尺寸单调地增加,而几乎不取决于溶质 - 溶剂相互作用强度。此外,还检查了裸HNC,裸kh,percus-yevick和法术改性闭包的性能,以报告溶质体积与从oz理论获得的SFE的误差之间的关系。我们发现,HNC和KH闭合下的SFE误差不一定与溶质体积成比例。

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