ISSN   1004-0595

CN  62-1224/O4

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钱宇, 戴惠良. 基于不同探针作用下石墨烯边界效应的摩擦调控[J]. 摩擦学学报, 2021, 41(5): 700-709. DOI: 10.16078/j.tribology.2020191
引用本文: 钱宇, 戴惠良. 基于不同探针作用下石墨烯边界效应的摩擦调控[J]. 摩擦学学报, 2021, 41(5): 700-709. DOI: 10.16078/j.tribology.2020191
QIAN Yu, DAI Huiliang. Friction Control of Graphene Boundary Effect Based on Different Probes[J]. TRIBOLOGY, 2021, 41(5): 700-709. DOI: 10.16078/j.tribology.2020191
Citation: QIAN Yu, DAI Huiliang. Friction Control of Graphene Boundary Effect Based on Different Probes[J]. TRIBOLOGY, 2021, 41(5): 700-709. DOI: 10.16078/j.tribology.2020191

基于不同探针作用下石墨烯边界效应的摩擦调控

Friction Control of Graphene Boundary Effect Based on Different Probes

  • 摘要: 石墨烯作为一种固体润滑剂,广泛应用于微纳机械设备中. 尽可能地减少石墨烯的摩擦是提高器件性能、延长器件寿命的关键措施. 采用改变石墨烯表面作用区域的方法对石墨烯与探针尖端的摩擦进行了研究. 利用锥形探针和球形探针测量了石墨烯与SiO2/Si基底的边界位置及到石墨烯中心区域之间的平均摩擦力. 结果表明:对于单层石墨烯,在锥形探针的作用下,石墨烯中心区域的平均摩擦力明显大于其边界区域处的平均摩擦力;而在球形探针的作用下,石墨烯的平均摩擦力随所选区域的变化不明显. 对于多层石墨烯,在两种探针作用下,石墨烯的平均摩擦力随所选区域的变化都不明显.

     

    Abstract: As a solid lubricant, graphene is widely used in micro and nano mechanical devices. Reducing the friction of graphene as much as possible is the key measure to improve the performance of these devices and extend their life. The friction between graphene and probe tip is studied by changing the active region of graphene surface. The conical probe and spherical probe are used to measure the average friction from the boundary region between graphene and SiO2/Si substrate to the central region of graphene. The results show that for single-layer graphene, the average friction force in the central region of graphene is significantly greater than that in the boundary region under the action of conical probe, while the average friction force of graphene varies little with the selected region under the action of spherical probe. For multilayer graphene, the average friction force of graphene varies little with the selected region under the action of two kinds of probes.

     

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