Simulation of Atomic-Scale Ultralow Friction of Graphite/C60/Graphite Interface along [1010] Direction
Naruo Sasaki, Noriaki Itamura, Kouji Miura
Abstract
Open-access reader
Naruo Sasaki, Noriaki Itamura, Kouji Miura
Abstract
Open-access reader
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.
OpenAlex reports 24 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
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