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首页> 外文期刊>The Journal of Chemical Physics >Understanding anisotropic growth behavior of hexagonal ice on a molecular scale: A molecular dynamics simulation study
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Understanding anisotropic growth behavior of hexagonal ice on a molecular scale: A molecular dynamics simulation study

机译:在分子尺度上了解六角形冰的各向异性生长行为:分子动力学模拟研究

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摘要

Although distinct growth behaviors on different faces of hexagonal ice have long been suggested, their understanding on a molecular scale has been hampered due to experimental difficulties near interfaces. We present a molecular dynamics simulation study to unravel the molecular origin of anisotropy in the growth kinetics of hexagonal ice by visualizing the formation of transient water structures in the growing ice interface. During ice growth, the formation of transient structures and their rearrangement to the final ice configuration are observed irrespective of growth direction. However, we find that their structure and duration differ significantly depending on growth direction. In the direction perpendicular to the basal face of hexagonal ice along which growth occurs most slowly, a two-dimensional transient structure, which is formed by competing hexagonal and cubic arrangements within the same layer, persists for a significant period of time, contrasted with short-lived transient structures in other directions. This observation of such transient water structures and their rearrangement during ice growth provides a clear explanation of different growth rates on each face of hexagonal ice on a molecular scale.
机译:尽管长期以来人们一直建议在六角形冰的不同面上具有明显的生长行为,但是由于界面附近的实验困难,它们在分子尺度上的理解受到了阻碍。我们提供了一个分子动力学模拟研究,通过可视化正在生长的冰界面中瞬态水结构的形成来揭示六角形冰的生长动力学中各向异性的分子起源。在冰的生长过程中,无论生长方向如何,都可以观察到瞬态结构的形成及其向最终冰构型的重排。但是,我们发现它们的结构和持续时间根据生长方向而有很大差异。在垂直于六角形冰底面的方向上,生长速度最慢,在同一层中由六角形和立方形排列相互竞争而形成的二维瞬态结构持续了相当长的时间,而短时在其他方向上存在的瞬态结构。对这种瞬态水结构及其在冰生长过程中的重排的观察提供了分子尺度上六角形冰每个面上不同生长速率的清晰解释。

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