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The Dynamics of Formation of Graphane-like Fluorinated Graphene Membranes (Fluorographene): A Reactive Molecular Dynamics Study

机译:石墨烯状氟化石墨烯膜(氟石墨烯)的形成动力学:反应性分子动力学研究

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Using fully reactive molecular dynamics methodologies we investigated the structural and dynamical aspects of the fluorination mechanism leading to fluorographene formation from graphene membranes. Fluorination tends to produce significant defective areas on the membranes with variation on the typical carbon-carbon distances, sometimes with the presence of large holes due to carbon losses. The results obtained in our simulations are in good agreement with the broad distribution of values for the lattice parameter experimentally observed. We have also investigated mixed atmospheres composed by H and F atoms. When H is present in small quantities an expressive reduction on the rate of incorporation of fluorine was observed. On the other hand when fluorine atoms are present in small quantities in a hydrogen atmosphere, they induce an increasing on the hydrogen incorporation and the formation of locally self-organized structure of adsorbed H and F atoms.
机译:使用完全反应性的分子动力学方法,我们研究了氟化机理的结构和动力学方面,这些机理导致了石墨烯膜形成氟石墨烯的形成。氟化趋于在膜上产生明显的缺陷区域,其典型的碳-碳距离会发生变化,有时会由于碳损失而出现大孔。在我们的模拟中获得的结果与实验观察到的晶格参数的值的广泛分布高度吻合。我们还研究了由H和F原子组成的混合气氛。当H少量存在时,观察到氟的掺入速率的表达降低。另一方面,当氟原子在氢气氛中少量存在时,它们引起氢结合的增加以及吸附的H和F原子的局部自组织结构的形成。

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