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Modelling water adsorption on Au(210) surfaces: II. Monte Carlo simulations

机译:模拟在Au(210)表面上的水吸附:II。蒙特卡洛模拟

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Canonical Monte Carlo simulations for the Au(210)/H2O interface, using a force field recently proposed by us, are reported. The results exhibit the main features normally observed in simulations of water molecules in contact with different noble metal surfaces. The calculations also assess the influence of the surface topography on the structural aspects of the adsorbed water and on the distribution of the water molecules in the direction normal to the metal surface plane. The adsorption process is preferential at sites in the first layer of the metal. The analysis of the density profiles and dipole moment distributions points to two predominant orientations. Most of the molecules are adsorbed with the molecular plane parallel to surface, while others adsorb with one of the O-H bonds parallel to the surface and the other bond pointing towards the bulk liquid phase. There is also evidence of hydrogen bond formation between the first and second solvent layers at the interface. (c) 2007 Elsevier B.V. All rights reserved.
机译:报告了使用我们最近提出的力场对Au(210)/ H2O界面进行规范的蒙特卡洛模拟。结果显示出通常在模拟水分子与不同贵金属表面接触时观察到的主要特征。这些计算还评估了表面形貌对吸附水的结构方面以及在垂直于金属表面平面的方向上水分子分布的影响。吸附过程在金属第一层的位置优先。密度分布和偶极矩分布的分析指向两个主要方向。大多数分子以平行于表面的分子平面吸附,而其他分子以平行于表面的O-H键和另一键指向整体液相的方式吸附。也有证据表明在界面的第一和第二溶剂层之间形成了氢键。 (c)2007 Elsevier B.V.保留所有权利。

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