Tearing of free-standing graphene

M. J. B. Moura and M. Marder
Phys. Rev. E 88, 032405 – Published 12 September 2013

Abstract

We examine the fracture mechanics of tearing graphene. We present a molecular dynamics simulation of the propagation of cracks in clamped, free-standing graphene as a function of the out-of-plane force. The geometry is motivated by experimental configurations that expose graphene sheets to out-of-plane forces, such as back-gate voltage. We establish the geometry and basic energetics of failure and obtain approximate analytical expressions for critical crack lengths and forces. We also propose a method to obtain graphene's toughness. We observe that the cracks’ path and the edge structure produced are dependent on the initial crack length. This work may help avoid the tearing of graphene sheets and aid the production of samples with specific edge structures.

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  • Received 9 July 2013

DOI:https://doi.org/10.1103/PhysRevE.88.032405

©2013 American Physical Society

Authors & Affiliations

M. J. B. Moura

  • IBM Research-Brazil, Av. Pasteur 138/146, Botafogo, Rio de Janeiro, CEP 22290-240, Brazil

M. Marder*

  • Center for Nonlinear Dynamics and Department of Physics, The University of Texas at Austin, 1 University Station C1600, Austin, Texas 78712-0264, USA

  • *Corresponding author: marder@mail.utexas.edu

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Vol. 88, Iss. 3 — September 2013

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