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Potentials of mean force for hydrophobic interactions between hydrocarbons in water solution: dependence on temperature, solute shape, and solute size

机译:水溶液中烃类之间疏水相互作用的平均力势:取决于温度,溶质形状和溶质尺寸

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We carried out molecular dynamics (MD) simulations with the AMBER force field for four pairs of spherical dimers of different size (neopentane, bicyclooctane, adamantane, and fullerene-C-60) using the TIP3P model of water as solvent. For comparison, we performed MD simulations for a linear molecule of n-pentane at the same conditions. To assess the entropy contribution to the Gibbs free energy, MD simulations were run at three different temperatures of 273K, 323K, and 348K, respectively, using umbrella-sampling/the WHAM method. The stability of dimers is described by a potential of mean force (PMF). The shape of PMF curves for hydrophobic interactions is characteristic, and entails a contact minimum, a solvent-separated minimum, and a desolvation maximum. The depth and position of the contact minimum for each pair change with the size of the nonpolar particle, and are consequently shifted to a larger distance for larger molecules. Additionally, the Lennard-Jones contribution to the PMF increases simultaneously with an increase in particle size. For a linear dimer, the contact minimum is shifted to a shorter distance than it is for spherical systems with the same number of carbon atoms. The contact minima on PMF curves increase with temperature, suggesting that the association entropy is positive. Dimensionless PMF curves showed a low dependency (near contact minima regions) on temperature, as the association entropy is low. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:我们使用水作为溶剂的TIP3P模型,利用AMBER力场对四对不同大小的球形二聚体(新戊烷,双环辛烷,金刚烷和富勒烯C-60)进行了分子动力学(MD)模拟。为了进行比较,我们在相同条件下对正戊烷的线性分子进行了MD模拟。为了评估熵对吉布斯自由能的贡献,使用伞式采样/ WHAM方法分别在273K,323K和348K的三个不同温度下进行了MD模拟。二聚体的稳定性由平均力(PMF)的电位来描述。用于疏水相互作用的PMF曲线的形状具有特征性,需要接触最小,溶剂分离的最小和去溶剂化的最大。每对接触极小值的深度和位置随非极性粒子的大小而变化,因此对于较大的分子,它们的位移和位移较大。另外,Lennard-Jones对PMF的贡献随着粒度的增加而同时增加。对于线性二聚体,与具有相同碳原子数的球形体系相比,最小接触距离偏移的距离更短。 PMF曲线上的接触最小值随温度增加而增加,表明缔合熵为正。由于缔合熵很低,无因次PMF曲线显示出对温度的低依赖性(接近最小接触区域)。版权所有(c)2014 John Wiley&Sons,Ltd.

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