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Friction anisotropy-driven domain imaging on exfoliated monolayer graphene
Authors:Choi Jin Sik  Kim Jin-Soo  Byun Ik-Su  Lee Duk Hyun  Lee Mi Jung  Park Bae Ho  Lee Changgu  Yoon Duhee  Cheong Hyeonsik  Lee Ki Ho  Son Young-Woo  Park Jeong Young  Salmeron Miquel
Affiliation:Division of Quantum Phases and Devices, Department of Physics, Konkuk University, Seoul 143-701, Korea.
Abstract:Graphene produced by exfoliation has not been able to provide an ideal graphene with performance comparable to that predicted by theory, and structural and/or electronic defects have been proposed as one cause of reduced performance. We report the observation of domains on exfoliated monolayer graphene that differ by their friction characteristics, as measured by friction force microscopy. Angle-dependent scanning revealed friction anisotropy with a periodicity of 180° on each friction domain. The friction anisotropy decreased as the applied load increased. We propose that the domains arise from ripple distortions that give rise to anisotropic friction in each domain as a result of the anisotropic puckering of the graphene.
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