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首页> 外文期刊>The Journal of Chemical Physics >Molecular-dynamics studies of surface of ice Ih
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Molecular-dynamics studies of surface of ice Ih

机译:冰表面Ih的分子动力学研究

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We performed molecular dynamics calculations of surface of ice Ih in order to investigate formation mechanism of melting layer on the surface.The results showed that the vibrational amplitude of the atoms in the surface layer greatly depends on the crystal orientation,whereas that in the ice bulk is isotropic.The anisotropy of the vibration is due to a dangling motion of the free O-H bonds exist at the surface layer.The dangling motion enhances the rotational motion of the water molecules.The vibrational density of state showed a coupling between the rotational vibration and the lattice vibration of the water molecules in the surface layer.The coupling of the vibrations causes a distortion of ice lattice.Through the hydrogen-bonding network,the distortion transmits to the interior of the crystal.We conclude that the dangling motion of the free O-H bonds exist at the surface layer is one of the dominant factors governing the surface melting of ice crystal.
机译:为了研究冰在表面的融化机理,我们对冰的表面进行了分子动力学计算。结果表明,表层中原子的振动幅度很大程度上取决于晶体的取向,而冰块中的原子的振动幅度则取决于晶体的取向。各向异性是由于表层存在自由OH键的悬空运动引起的,悬空运动增强了水分子的旋转运动,状态振动密度表明旋转振动与水之间存在耦合。表层中水分子的晶格振动。振动的耦合导致冰晶格畸变。通过氢键网络,该畸变传递到晶体内部。我们得出结论,自由的悬空运动在表面层存在的OH键是控制冰晶表面融化的主要因素之一。

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