2007Japanese Journal of Applied PhysicsOpen access

Simulation of Atomic-Scale Ultralow Friction of Graphite/C60/Graphite Interface along [1010] Direction

Naruo Sasaki, Noriaki Itamura, Kouji Miura

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Abstract

The graphite/C 60 /graphite interface plays an important role in the atomic-scale ultralow friction of C 60 intercalated graphite. In this study, the ultralow frictional feature along the [10 0] direction of the graphite/C 60 /graphite interface is numerically investigated and compared with that of the graphite/graphite/graphite interface. Simulated interlayer distances of about 1.3 nm are in good agreement with previous experimental results. The atomic-scale friction coefficient of the graphite/C 60 /graphite interface decreases to about 30% of that of the graphite/graphite/graphite interface. It is clarified that the three-dimensional degree of freedom of intercalated C 60 motion is one of the origins of the ultralow friction of the graphite/C 60 /graphite interface along the [10 0] direction.

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The graphite/C 60 /graphite interface plays an important role in the atomic-scale ultralow friction of C 60 intercalated graphite. In this study, the ultralow frictional feature along the [10 0] direction of the graphite/C 60 /graphite interface is numerically investigated and compared with that of the graphite/graphite/graphite interface. Simulated interlayer distances of about 1.3 nm are in good agreement with previous experimental results. The atomic-scale friction coefficient of the graphite/C 60 /graphite interface decreases to about 30% of that of the graphite/graphite/graphite interface. It is clarified that the three-dimensional degree of freedom of intercalated C 60 motion is one of the origins of the ultralow friction of the graphite/C 60 /graphite interface along the [10 0] direction.

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Available abstract

The graphite/C 60 /graphite interface plays an important role in the atomic-scale ultralow friction of C 60 intercalated graphite. In this study, the ultralow frictional feature along the [10 0] direction of the graphite/C 60 /graphite interface is numerically investigated and compared with that of the graphite/graphite/graphite interface. Simulated interlayer distances of about 1.3 nm are in good agreement with previous experimental results. The atomic-scale friction coefficient of the graphite/C 60 /graphite interface decreases to about 30% of that of the graphite/graphite/graphite interface. It is clarified that the three-dimensional degree of freedom of intercalated C 60 motion is one of the origins of the ultralow friction of the graphite/C 60 /graphite interface along the [10 0] direction.

Key concepts: Graphite, Materials science, Atomic units, Composite material, Physics, Quantum mechanics

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