| Literature DB >> 30109806 |
Wengen Ouyang1, Davide Mandelli1, Michael Urbakh1, Oded Hod1.
Abstract
We demonstrate snake-like motion of graphene nanoribbons atop graphene and hexagonal boron nitride ( h-BN) substrates using fully atomistic nonequilibrium molecular dynamics simulations. The sliding dynamics of the edge-pulled nanoribbons is found to be determined by the interplay between in-plane ribbon elasticity and interfacial lattice mismatch. This results in an unusual dependence of the friction-force on the ribbon's length, exhibiting an initial linear rise that levels-off above a junction-dependent threshold value dictated by the pre-slip stress distribution within the slider. As part of this letter, we present the LAMMPS implementation of the registry-dependent interlayer potentials for graphene, h-BN, and their heterojunctions that were used herein, which provides enhanced performance and accuracy.Entities:
Keywords: Graphene nanoribbons; LAMMPS; hexagonal boron nitride (h-BN); nanoscale friction; registry-dependent interlayer potential; stress distribution
Year: 2018 PMID: 30109806 DOI: 10.1021/acs.nanolett.8b02848
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189