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Lubricity of graphene on rough Au surfaces

机译:粗糙Au表面上石墨烯的润滑性

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摘要

This paper studies the lubricating properties of graphene on randomly rough Au surfaces in sliding nanofriction using molecular dynamics. It is shown that the friction and the consequent heat dissipation decrease more than an order of magnitude in the presence of graphene. The performance of graphene nanoribbons as lubricants is, however, limited because of detachment and displacement at the interface. Sliding contacts lubricated with a stretched graphene sheet exhibit low friction, but possibly also low structural stability. This suggests that the graphene-substrate adherence could be crucial for the lubricity of two-dimensional materials on rough metal surfaces.
机译:本文研究了石墨烯对使用分子动力学滑动纳米尺度的随机粗糙AU表面的润滑性能。 结果表明,在石墨烯存在下,摩擦和随后的散热减小了多个幅度。 然而,由于界面处的脱离和位移是有限的,石墨烯纳米的性能是有限的。 用拉伸的石墨烯片润滑滑动触点表现出低摩擦,但可能还具有低结构稳定性。 这表明石墨烯衬底粘附对于粗金属表面上的二维材料的润滑性可能是至关重要的。

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