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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Structure, energetics, and dynamics of water adsorbed on the muscovite (001) surface: A molecular dynamics simulation
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Structure, energetics, and dynamics of water adsorbed on the muscovite (001) surface: A molecular dynamics simulation

机译:吸附在白云母(001)表面上的水的结构,能量学和动力学:分子动力学模拟

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摘要

Molecular dynamics (MD) computer simulations of liquid water adsorbed on the muscovite (001) surface provide a greatly increased, atomistically detailed understanding of surface-related effects on the spatial variation in the structural and orientational ordering, hydrogen bond (H-bond) organization, and local density of H2O molecules at this important model phyllosilicate surface. MD simulations at constant temperature and volume (statistical NVT ensemble) were performed for a series of model systems consisting of a two-layer muscovite slab (representing 8 crystallographic surface unit cells of the substrate) and 0 to 319 adsorbed H2O molecules, probing the atomistic structure and dynamics of surface aqueous films up to 3 nm in thickness. The results do not demonstrate a completely liquid-like behavior, as otherwise suggested from the interpretation of X-ray reflectivity measurements' and earlier Monte Carlo simulations.(2) Instead, a more structurally and orientationally restricted behavior of surface H2O molecules is observed, and this structural ordering extends to larger distances from the surface than previously expected. Even at the largest surface water coverage studied, over 20% of H2O molecules are associated with specific adsorption sites, and another 50% maintain strongly preferred orientations relative to the surface. This partially ordered structure is also different from the well-ordered 2-dimensional ice-like structure predicted by ab initio MD simulations for a system with a complete monolayer water coverage.(3) However, consistent with these ab initio results, our simulations do predict that a full molecular monolayer surface water coverage represents a relatively stable surface structure in terms of the lowest diffusional mobility of H2O molecules along the surface. Calculated energies of water adsorption are in good agreement with available experimental data.(4)
机译:分子动力学(MD)计算机模拟白云母(001)表面吸附的液态水,提供了对表面相关效应的极大增加的原子详细了解,对空间相关的结构和取向有序,氢键(H键)组织有影响,以及在这个重要的层状硅酸盐表面处H2O分子的局部密度。在一系列由两层白云母板(代表基底的8个晶体学表面晶胞)和0至319个吸附的H2O分子组成的模型系统中,进行了恒定温度和体积(统计NVT整体)的MD模拟。厚度达3 nm的表面水膜的结构和动力学。结果并未显示出完全像液体的行为,如从X射线反射率测量的解释和较早的蒙特卡洛模拟中所暗示的那样。(2)相反,观察到表面H2O分子在结构和方向上受到更严格的限制,而且这种结构有序延伸到表面的距离比以前预期的要大。即使在研究的最大表面水覆盖率下,也有超过20%的H2O分子与特定的吸附位点相关,另外50%的分子相对于表面保持了强烈的首选方向。这种部分有序的结构也不同于完全具有单层水覆盖的系统的从头算MD模拟预测的有序的二维冰状结构。(3)但是,与这些从头算结果一致,我们的模拟确实根据H2O分子沿表面的最低扩散迁移率的预测,完整的分子单层表面水覆盖率表示相对稳定的表面结构。计算得出的吸水能与现有实验数据吻合良好。(4)

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