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July 17, 2008Science20,857 citations

Measurement of the Elastic Properties and Intrinsic Strength of Monolayer Graphene

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CLChanggu LeeXWXiaoding WeiJKJeffrey W. Kysar

Key Points

  • This research aims to measure the elastic properties and intrinsic breaking strength of monolayer graphene membranes.
  • Conducted nanoindentation using an atomic force microscope to assess mechanical properties.
  • Interpreted force-displacement behavior through nonlinear elastic stress-strain response.
  • Second-order elastic stiffness measured at 340 N m(-1) and third-order elastic stiffness at -690 N m(-1).
  • Calculated breaking strength of 42 N m(-1) indicates the intrinsic strength of defect-free graphene sheets.
  • Young's modulus determined at 1.0 terapascals, showcasing graphene as the strongest material measured.

Abstract

We measured the elastic properties and intrinsic breaking strength of free-standing monolayer graphene membranes by nanoindentation in an atomic force microscope. The force-displacement behavior is interpreted within a framework of nonlinear elastic stress-strain response, and yields second- and third-order elastic stiffnesses of 340 newtons per meter (N m(-1)) and -690 Nm(-1), respectively. The breaking strength is 42 N m(-1) and represents the intrinsic strength of a defect-free sheet. These quantities correspond to a Young's modulus of E = 1.0 terapascals, third-order elastic stiffness of D = -2.0 terapascals, and intrinsic strength of sigma(int) = 130 gigapascals for bulk graphite. These experiments establish graphene as the strongest material ever measured, and show that atomically perfect nanoscale materials can be mechanically tested to deformations well beyond the linear regime.

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Cite This Study

Lee et al. (2008) studied this question.

synapsesocial.com/papers/69d6bb9675cae9790bed89a5https://doi.org/10.1126/science.1157996
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