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The quantum mechanics-based polarizable force field for water simulations

机译:用于水模拟的量子力学的极化力场

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We report here a new force field for water based solely on quantum mechanics (QM) calculations with no empirical data. The QM was at a high level, coupled cluster single double triple, for all orientations and distances for water dimer plus X3LYP density functional theory (DFT) on 19 larger water clusters. In addition, we included charge and polarization based on the polarizable charge equilibration method and nonbond interactions from DFT-D3 calculations on the H-2 and O-2 crystal. This model, denoted as RexPoN, provides quite excellent agreement with experimental (expr) data for the solid and liquid phase of water: T-melt = 273.3 K (expr = 273.15 K) and properties at 298 K: Delta H-vap = 10.36 kcal/mol (expr = 10.52), density = 0.9965 gr/cm(3) (expr = 0.9965), entropy = 68.4 (J/mol)/K (expr = 69.9), dielectric constant = 76.1 (expr = 78.4), and ln D-s (self-diffusion coef) = -10.08 (expr = -11.24). Such an accurate force field for water will, we believe, be useful for full solvent calculations of electrocatalysis, where we can restrict QM water to just the first one or two layers involving reactions, using RexPoN to provide the polarization for a more distant solvent. Also, RexPoN may provide a better description of the solvent for proteins, DNA, polymers, and inorganic systems for applications to biomolecular, pharma, electrocatalysis (fuel cells and water splitting), and batteries where interaction with explicit water molecules plays a significant role. Published by AIP Publishing.
机译:我们在此报告了一种新的水,仅基于量子力学(QM)计算,没有经验数据。 QM在高水平的耦合簇单双三倍,用于水二聚体加上X3LYP密度泛函理论(DFT)的所有方向和距离19个较大的水簇。此外,我们基于来自H-2和O-2晶体的DFT-D3计算的可极化电荷平衡方法和非炸相互作用的电荷和偏振。该模型表示为Rexpon,提供了与水的固体和液相的实验(ExPr)数据提供了相当优秀的一致性:T-Melt = 273.3k(Expr = 273.15 k)和298k的性质:Delta H-VAP = 10.36 kcal / mol(expr = 10.52),密度= 0.9965 gr / cm(3)(expr = 0.9965),熵= 68.4(j / mol)/ k(expr = 69.9),介电常数= 76.1(expr = 78.4),和LN DS(自扩散COEF)= -10.08(expr = -11.24)。我们认为,这种精确的水的力场意味着,对于电催化的完全溶剂计算有用,在那里我们可以使用Rexpon将QM水限制为涉及反应的第一或两层,以提供更远距离溶剂的偏振。此外,Rexpon可以更好地描述蛋白质,DNA,聚合物和无机系统的溶剂,用于应用于生物分子,Pharma,电寄生分析(燃料电池和水分解),以及与明确水分子相互作用起着重要作用的电池。通过AIP发布发布。

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