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Effects of surface interactions on heterogeneous ice nucleation for a monatomic water model

机译:表面相互作用对单原子水模型中非均质冰成核的影响

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Despite its importance in atmospheric science, much remains unknown about the microscopic mechanism of heterogeneous ice nucleation. In this work, we perform hybrid Monte Carlo simulations of the heterogeneous nucleation of ice on a range of generic surfaces, both flat and structured, in order to probe the underlying factors affecting the nucleation process. The structured surfaces we study comprise one basal plane bilayer of ice with varying lattice parameters and interaction strengths. We show that what determines the propensity for nucleation is not just the surface attraction, but also the orientational ordering imposed on liquid water near a surface. In particular, varying the ratio of the surface's attraction and orientational ordering can change the mechanism by which nucleation occurs: ice can nucleate on the structured surface even when the orientational ordering imposed by the surface is weak, as the water molecules that interact strongly with the surface are themselves a good template for further growth. We also show that lattice matching is important for heterogeneous nucleation on the structured surface we study. We rationalise these brute-force simulation results by explicitly calculating the interfacial free energies of ice and liquid water in contact with the nucleating surface and their variation with surface interaction parameters.
机译:尽管它在大气科学中很重要,但关于异质冰核化的微观机制仍知之甚少。在这项工作中,我们对平面和结构化的一般表面上的冰的异质形核进行了混合蒙特卡洛模拟,以探究影响形核过程的潜在因素。我们研究的结构化表面包括一层具有不同晶格参数和相互作用强度的冰基面双层。我们表明,决定成核倾向的不仅是表面吸引力,还包括施加在表面附近液态水上的取向顺序。特别是,改变表面的吸引力和取向顺序的比率可以改变发生形核的机制:即使表面施加的取向顺序较弱,冰也会在结构化表面上形核,因为与水分子强烈相互作用的水分子表面本身就是进一步增长的良好模板。我们还表明,晶格匹配对于我们研究的结构化表面上的异质成核非常重要。通过显式计算与成核表面接触的冰和液态水的界面自由能及其随表面相互作用参数的变化,我们合理化了这些蛮力模拟结果。

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