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The effect of Stone-Wales defects and roughness degree on the lubricity of graphene on gold surfaces

机译:石材 - 威尔士缺陷和粗糙度对金表面润滑性润滑性的影响

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摘要

In this study, the lubricity of perfect and defective graphene on the gold substrate (Au (111)) has been investigated by using molecular dynamics simulations. The influence of surface morphology as well as the Stone-Wales (SW) defects concentration on the friction of graphene on the gold surface is explored. The SW defects in the range of 0-2.55% are randomly distributed into the graphene. Furthermore, the self-affine fractal method is employed to generate realistic rough surfaces. The effect of the external force, F-E, in the range of 0.25-1.0 nN, on the drag coefficients is also investigated. It is shown that the friction force slightly depends on the sliding velocity for all systems. We show that by increasing the defect concentration, the lubricity of graphene nano-sheet slightly decreases. Moreover, it is shown that the friction is almost insensitive to the roughness degree, within the range studied. Both of these effects can be rationalized through variations in the real atomic contact area.
机译:在该研究中,通过使用分子动力学模拟研究了金基板上的完美和缺陷石墨烯的润滑性。探讨了表面形态的影响以及石威尔士(SW)缺陷浓度对金表面上石墨烯摩擦的影响。 0-2.55%范围内的SW缺陷随机分布到石墨烯中。此外,采用自助分形法产生现实粗糙表面。还研究了外力F-E在拖曳系数的范围内的外力F-E的效果。结果表明,摩擦力略微取决于所有系统的滑动速度。我们表明,通过提高缺陷浓度,石墨烯纳米片的润滑性略微降低。此外,示出了在研究的范围内,摩擦对粗糙度几乎不敏感。这些效果都可以通过真实原子接触面积的变化来合理化。

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