多层石墨烯中厚度依赖性附着力及其与表面粗糙度的关系

H. Pourzand, P. Pai, M. Tabib-Azar
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引用次数: 5

摘要

本文首次对不同厚度的多层石墨烯薄膜的附着力进行了实验测定和研究。在薄石墨烯层中,黏附力随厚度的减小而增大,接近于衬底的黏附力,这与单层石墨烯的范德华力透明度有关。在非常厚的石墨烯层中,我们看到附着力的增加与衬底表面粗糙度的变化有关。提出了测量亚纳米粗糙度和尖端半径尺度粗糙度平面附着力的简单模型。基于这些模型,我们了解到小的表面粗糙度会降低附着力,而大的表面粗糙度会增加附着力。从附着力测量得到的实验数据证实了这一推论。结果表明,表面粗糙度在AFM尖端半径尺度上容易使粘附力加倍,表面粗糙度在粘附力测量中起重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thickness dependent adhesion force and its correlation to surface roughness in multilayered graphene
In this paper adhesion force of multi-layered graphene films with different thickness is experimentally determined and studied for the first time. In thin graphene layers, the adhesion force increases with decreasing thickness and approaches that of substrate which is correlated to Van Der Waals force transparency of mono-layer graphene. In very thick graphene layers, a rise in adhesion force is seen which we correlate to surface roughness changes of the substrate. Simple models for measuring adhesion force for a flat surface with sub-nanometer roughness and tip-radius scale roughness are proposed. Based on these models we understand that small surface roughness decreases adhesion force while large roughness will increase the adhesion force. This deduction is corroborated by the experimental data obtained from adhesion force measurements. It is also shown that roughness in the scale of AFM tip-radius can double the adhesion force easily and surface roughness plays an important role in the adhesion force measurements.
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