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首页> 外文期刊>Journal of physical chemistry letters >Effect of Atomic Corrugation on Adhesion and Friction: A Model Study with Graphene Step Edges
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Effect of Atomic Corrugation on Adhesion and Friction: A Model Study with Graphene Step Edges

机译:原子波纹对粘附性和摩擦的影响:石墨烯步边的模型研究

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This Letter reports that the atomic corrugation of the surface can affect nanoscale interfacial adhesion and friction differently. Both atomic force microscopy (AFM) and molecular dynamics (MD) simulations showed that the adhesion force needed to separate a silica tip from a graphene step edge increases as the side wall of the tip approaches the step edge when the tip is on the lower terrace and decreases as the tip ascends or descends the step edge. However, the friction force measured with the same AFM tip moving across the step edge does not positively correlate with the measured adhesion, which implies that the conventional contact mechanics approach of correlating interfacial adhesion and friction could be invalid for surfaces with atomic-scale features. The chemical and physical origins for the observed discrepancy between adhesion and friction at the atomic step edge are discussed.
机译:这封信报道了表面的原子波纹可以影响纳米级界面粘附和摩擦力。 原子力显微镜(AFM)和分子动力学(MD)模拟表明,当尖端在下部露台上时,当尖端的侧壁接近台阶边缘时,将二氧化硅尖端与石墨烯尖端分离的粘合力增加 随着尖端上升或下降阶跃边缘的减小。 然而,用相同的AFM尖端测量的摩擦力与跨越阶梯边缘移动的摩擦力与测量的粘合性没有呈正相关,这意味着与具有原子尺度特征的表面可以无效地相关的接触力学方法可以无效。 讨论了原子步骤边缘在原子阶段边缘粘附和摩擦之间观察到的差异的化学和物理起源。

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