Probing Mechanical Properties of Graphene with Raman Spectroscopy
arXiv:1005.4900 · doi:10.1007/s10853-010-4673-3
Abstract
The use of Raman scattering techniques to study the mechanical properties of graphene films is reviewed here. The determination of Gruneisen parameters of suspended graphene sheets under uni- and bi-axial strain is discussed and the values are compared to theoretical predictions. The effects of the graphene-substrate interaction on strain and to the temperature evolution of the graphene Raman spectra are discussed. Finally, the relation between mechanical and thermal properties is presented along with the characterization of thermal properties of graphene with Raman spectroscopy.
To appear in the Journal of Materials Science
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- Phonon and structural changes in deformed Bernal stacked bilayer graphene
- Optical Probing of Electronic Interaction between Graphene and Hexagonal Boron Nitride
- Fano resonance in Raman scattering of graphene
- Imprint of transition metal d-orbitals on graphene Dirac cone
- Nanostructures in suspended mono- and bilayer epitaxial graphene
- Enhanced Raman scattering and weak localization in graphene deposited on GaN nanowires
- Reversible Sulfuric Acid Doping of Graphene Probed by in-situ Multi-Wavelength Raman Spectroscopy
- Quantifying Mn diffusion through transferred versus directly-grown graphene barriers
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