Electronic-Mechanical Coupling in Graphene from in situ Nanoindentation Experiments and Multiscale Atomistic Simulations
Mingyuan Huang, Tod A. Pascal, Hyungjun Kim, William A. Goddard III, Julia R. Greer
2011Nano Letters, 11(3), 1241-1246301cited
Abstract
We present the in situ nanoindentation experiments performed on suspended graphene devices to introduce homogeneous tensile strain, while simultaneously carrying out electrical measurements. We find that the electrical resistance shows only a marginal change even under severe strain, and the electronic transport measurement confirms that there is no band gap opening for graphene under moderate uniform strain, which is consistent with our results from the first-principles informed molecular dynamics simulation.
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Cite this publication
Huang, M., Pascal, T. A., Kim, H., III, W. A. G., & Greer, J. R. (2011). Electronic-Mechanical Coupling in Graphene from in situ Nanoindentation Experiments and Multiscale Atomistic Simulations. *Nano Letters*, *11*(3), 1241-1246. https://doi.org/10.1021/nl104227t
