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Strain engineering of friction between graphene layers

机译:石墨烯层之间摩擦的应变工程

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摘要

Molecular dynamics simulations are conducted to explore the possibility of strain engineering of interlayer friction of graphene. A graphene flake sliding on a strained graphene substrate is investigated to show that the interlayer friction can be versatilely tuned by strain. The friction at the incommensurate interface is insensitive to the tensile and small compressive strains, while at the commensurate interface the strain induced commensurability transition leads to a nonmonotonic variation of the friction with strain. The friction in both the commensurate and incommensurate cases can be remarkably enhanced by a large compressive strain when the flake is sliding next to the pucker generated by substrate buckling. Our findings may have general implications for the strain engineering of nanoscale friction.
机译:进行了分子动力学模拟,探讨石墨烯叠层摩擦应变工程的可能性。 研究了在应变的石墨烯基材上滑动的石墨烯片状,表明层间摩擦可以通过应变进行综合调节。 联脲酸盐界面的摩擦对拉伸和小的压缩菌株不敏感,而在相应的界面处,应变诱导的可致畸性转变导致具有菌株的摩擦的非单调变化。 当剥落在基材屈曲产生的褶皱旁边滑动时,通过大的压缩菌株可以显着提高相应和联络病例中的摩擦。 我们的发现可能对纳米级摩擦的应变工程有一般意义。

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