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氟化石墨烯的增强纳米摩擦。

Enhanced nanoscale friction on fluorinated graphene.

机构信息

Graduate School of EEWS (WCU), KAIST, Daejeon 305-701, Republic of Korea.

出版信息

Nano Lett. 2012 Dec 12;12(12):6043-8. doi: 10.1021/nl204019k. Epub 2012 Jun 25.

Abstract

Atomically thin graphene is an ideal model system for studying nanoscale friction due to its intrinsic two-dimensional (2D) anisotropy. Furthermore, modulating its tribological properties could be an important milestone for graphene-based micro- and nanomechanical devices. Here, we report unexpectedly enhanced nanoscale friction on chemically modified graphene and a relevant theoretical analysis associated with flexural phonons. Ultrahigh vacuum friction force microscopy measurements show that nanoscale friction on the graphene surface increases by a factor of 6 after fluorination of the surface, while the adhesion force is slightly reduced. Density functional theory calculations show that the out-of-plane bending stiffness of graphene increases up to 4-fold after fluorination. Thus, the less compliant F-graphene exhibits more friction. This indicates that the mechanics of tip-to-graphene nanoscale friction would be characteristically different from that of conventional solid-on-solid contact and would be dominated by the out-of-plane bending stiffness of the chemically modified graphene. We propose that damping via flexural phonons could be a main source for frictional energy dissipation in 2D systems such as graphene.

摘要

原子级薄的石墨烯是研究纳米尺度摩擦的理想模型体系,这归因于其本征的二维(2D)各向异性。此外,调控其摩擦学性能可能是基于石墨烯的微纳机械器件的一个重要里程碑。在这里,我们报告了在化学修饰的石墨烯上出乎意料地增强的纳米尺度摩擦,以及与弯曲声子相关的理论分析。超高真空摩擦力显微镜测量表明,表面氟化后,石墨烯表面的纳米尺度摩擦力增加了 6 倍,而附着力略有降低。密度泛函理论计算表明,氟化后石墨烯的面外弯曲刚度增加了 4 倍。因此,柔韧性较差的 F-石墨烯表现出更大的摩擦力。这表明针尖与石墨烯纳米尺度摩擦的力学性质将明显不同于传统的固-固接触,并且将由化学修饰石墨烯的面外弯曲刚度主导。我们提出,通过弯曲声子的阻尼可能是石墨烯等二维系统中摩擦能量耗散的主要来源。

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