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Molecular dynamics simulations of liquid silica crystallization

机译:液态二氧化硅结晶的分子动力学模拟

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摘要

Silica is one of the most abundant minerals on Earth and is widely used in many fields. Investigating the crystallization of liquid silica by atomic simulations is of great importance to understand the crystallization mechanism; however, the high crystallization barrier and the tendency of silica to form glasses make such simulations very challenging. Here we have studied liquid silica crystallization to β-cristobalite with metadynamics, using X-ray diffraction (XRD) peak intensities as collective variables. The frequent transitions between solid and liquid of the biased runs demonstrate the highly successful use of the XRD peak intensities as collective variables, which leads to the convergence of the free-energy surface. By calculating the difference in free energy, we have estimated the melting temperature of β-cristobalite, which is in good agreement with the literature. The nucleation mechanism during the crystallization of liquid silica can be described by classical nucleation theory.
机译:二氧化硅是地球上最丰富的矿物质之一,广泛用于许多领域。通过原子模拟研究液态二氧化硅的结晶对于理解结晶机理非常重要。然而,高的结晶势垒和二氧化硅形成玻璃的趋势使这种模拟非常具有挑战性。在这里,我们使用X射线衍射(XRD)峰强度作为集体变量,研究了液体硅晶体结晶的动力学,具有β-方石英。偏向运行的固体和液体之间的频繁转换表明,XRD峰强度作为集体变量非常成功地使用,这导致了自由能表面的收敛。通过计算自由能的差异,我们估算了β-方英石的熔化温度,这与文献资料相吻合。液态二氧化硅结晶过程中的成核机理可以用经典的成核理论来描述。

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