Publication | Closed Access
Softened Elastic Response and Unzipping in Chemical Vapor Deposition Graphene Membranes
366
Citations
27
References
2011
Year
Materials ScienceGraphene NanomeshesGraphene MembranesNanosheetEngineeringCarbon-based MaterialNanomaterialsNanotechnologyElastic ResponseSurface ScienceApplied PhysicsImage Grain BoundariesGraphene FiberGrapheneGraphene NanoribbonChemical Vapor Deposition
We use atomic force microscopy to image grain boundaries and ripples in graphene membranes obtained by chemical vapor deposition. Nanoindentation measurements reveal that out-of-plane ripples effectively soften graphene's in-plane stiffness. Furthermore, grain boundaries significantly decrease the breaking strength of these membranes. Molecular dynamics simulations reveal that grain boundaries are especially weakening when subnanometer voids are present in the lattice. Finally, we demonstrate that two graphene membranes brought together form membranes with higher resistance to breaking.
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