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首页> 外文期刊>The Journal of Chemical Physics >Solid-liquid work of adhesion of coarse-grained models of n-hexane on graphene layers derived from the conditional reversible work method
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Solid-liquid work of adhesion of coarse-grained models of n-hexane on graphene layers derived from the conditional reversible work method

机译:从条件可逆功方法推导的正己烷粗粒度模型在石墨烯层上的固液粘附力

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We address the question of how reducing the number of degrees of freedom modifies the interfacial thermodynamic properties of heterogeneous solid-liquid systems. We consider the example of n-hexane interacting with multi-layer graphene which we model both with fully atomistic and coarse-grained (CG) models. The CG models are obtained by means of the conditional reversible work (CRW) method. The interfacial thermodynamics of these models is characterized by the solid-liquid work of adhesion W-SL calculated by means of the dry-surface methodology through molecular dynamics simulations. We find that the CRW potentials lead to values of W-SL that are larger than the atomistic ones. Clear understanding of the relationship between the structure of n-hexane in the vicinity of the surface and W-SL is elucidated through a detailed study of the energy and entropy components of W-SL. We highlight the crucial role played by the solid-liquid energy fluctuations. Our approach suggests that CG potentials should be designed in such a way that they preserve the range of solid-liquid interaction energies, but also their fluctuations in order to preserve the reference atomistic value of W-SL. Our study thus opens perspectives into deriving CG interaction potentials that preserve the thermodynamics of solid-liquid contacts and will find application in studies that intend to address materials driven by interfaces. (C) 2015 AIP Publishing LLC.
机译:我们解决了一个问题,即如何减少自由度会改变多相固液系统的界面热力学性质。我们考虑正己烷与多层石墨烯相互作用的示例,我们可以使用完全原子模型和粗粒(CG)模型进行建模。 CG模型是通过条件可逆功(CRW)方法获得的。这些模型的界面热力学的特征在于,通过干表面方法通过分子动力学模拟计算出的粘附力W-SL的固液功。我们发现,CRW电势导致W-SL的值大于原子电势的值。通过对W-SL的能量和熵成分的详细研究,可以清楚地了解表面附近正己烷的结构与W-SL之间的关系。我们强调固液能量波动所起的关键作用。我们的方法表明,CG势的设计方式应使其既保留固液相互作用能的范围,又保留其波动,以保留W-SL的参考原子值。因此,我们的研究为保持固液接触热力学的CG相互作用势开辟了前景,并将在旨在解决界面驱动材料的研究中得到应用。 (C)2015 AIP Publishing LLC。

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