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Effect of tip shape on atomic-friction at graphite step edges

机译:尖端形状对石墨台阶边缘原子摩擦的影响

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摘要

Materials such as graphite exhibit step edges that affect their frictional behavior. Recent experimental studies found that an atomic force microscope tip can experience either an assisting force that facilitates sliding or a resistive force that impedes motion as it scans down a step. Here, an atomistic model is used to show that tip shape affects its trajectory on a graphite step edge, which determines the potential energy, and thus the frictional behavior. The relationship between trajectory and potential energy is confirmed using density-functional theory, which provides insight into the origin of the energy barrier at a step edge.
机译:石墨等材料的台阶边缘会影响其摩擦性能。最近的实验研究发现,原子力显微镜的尖端可能会遇到辅助滑动的阻力或抵抗运动的阻力,而阻力会阻碍运动。在这里,使用原子模型来显示尖端形状会影响其在石墨台阶边缘上的轨迹,从而确定势能,从而确定摩擦行为。轨迹和势能之间的关系已使用密度泛函理论进行了证实,该理论提供了对阶跃边缘的能垒起源的深入了解。

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