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Effect of Substrate Support on Dynamic Graphene/Metal Electrical Contacts

机译:基材支撑对动态石墨烯/金属电接触的影响

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摘要

Recent advances in graphene and other two-dimensional (2D) material synthesis and characterization have led to their use in emerging technologies, including flexible electronics. However, a major challenge is electrical contact stability, especially under mechanical straining or dynamic loading, which can be important for 2D material use in microelectromechanical systems. In this letter, we investigate the stability of dynamic electrical contacts at a graphene/metal interface using atomic force microscopy (AFM), under static conditions with variable normal loads and under sliding conditions with variable speeds. Our results demonstrate that contact resistance depends on the nature of the graphene support, specifically whether the graphene is free-standing or supported by a substrate, as well as on the contact load and sliding velocity. The results of the dynamic AFM experiments are corroborated by simulations, which show that the presence of a stiff substrate, increased load, and reduced sliding velocity lead to a more stable low-resistance contact.
机译:石墨烯和其他二维(2D)材料合成和表征的最新进展已导致其在包括柔性电子器件在内的新兴技术中的使用。然而,主要的挑战是电接触稳定性,尤其是在机械应变或动态负载下,这对于微机电系统中2D材料的使用而言可能很重要。在这封信中,我们使用原子力显微镜(AFM),在具有可变法向载荷的静态条件下以及在具有可变速度的滑动条件下,研究了石墨烯/金属界面处动态电触点的稳定性。我们的结果表明,接触电阻取决于石墨烯载体的性质,特别是石墨烯是自支撑的还是由基材支撑的,还取决于接触载荷和滑动速度。通过仿真证实了动态原子力显微镜实验的结果,结果表明,存在坚硬的基板,增加的载荷和减小的滑动速度会导致更稳定的低电阻接触。

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