Evolution of Raman G and G'(2D) Modes in Folded Graphene Layers
arXiv:1312.6924 · doi:10.1103/PhysRevB.89.235430
Abstract
Bernal- and non-Bernal-stacked graphene layers have been systematically studied by Raman imaging and spectroscopy. Two dominant Raman modes, G and G' (or 2D) of folded graphene layers exhibit three types of spectral features when interlayer lattice mismatches, defined by a rotational angle varies. Among these folded graphene layers, the most interesting one is the folded graphene layers that present an extremely strong G mode enhanced by a twist-induced Van Hove singularity. The evolution of Raman G and G' modes of such folded graphene layers are probed by changing the excitation photon energies. For the first time, doublet splitting of the G' mode in folded double-layer (1 + 1) and of the G mode in folded tetra-layer (2 + 2) graphene are clearly observed and discussed. The G' mode splitting in folded double-layer graphene is attributed to the coexistence of inner and outer scattering processes and the trigonal warping effect as well as further downwards bending of the inner dispersion branch at visible excitation energy. While the two peaks of the G mode in folded tetra-layer graphene are assigned to Raman-active mode (E2g) and lattice mismatch activated infrared-active mode (E1u), which is further verified by the temperature-dependent Raman measurements. Our study provides a summary and thorough understanding of Raman spectra of Bernal- and non-Bernal-stacked graphene layers and further demonstrates the versatility of Raman spectroscopy for exploiting electronic band structures of graphene layers.
29 pages, 10 figures
References in corpus (13)
- The Raman Fingerprint of Graphene
- Electrochemically Top Gated Graphene: Monitoring Dopants by Raman Scattering
- Uniaxial Strain in Graphene by Raman Spectroscopy: G peak splitting, Gruneisen Parameters and Sample Orientation
- Electric Field Effect Tuning of Electron-Phonon Coupling in Graphene
- Flat Bands in Slightly Twisted Bilayer Graphene
- Theory of double-resonant Raman spectra in graphene: intensity and line shape of defect-induced and two-phonon bands
- Raman 2D-Band Splitting in Graphene: Theory and Experiment
- Reduction of Fermi velocity in folded graphene observed by resonance Raman spectroscopy
- Edge chirality determination of graphene by Raman spectroscopy
- Observation of Anomalous Phonon Softening in Bilayer Graphene
- Raman-scattering study of the phonon dispersion in twisted bi-layer graphene
- Temperature evolution of infrared- and Raman-active phonons in graphite
- Imaging Stacking Order in Few-Layer Graphene
Cited by in corpus (8)
- Resonant Low Frequency Interlayer Shear Modes in Folded Graphene Layers
- Raman spectroscopic characterization of stacking configuration and interlayer coupling of twisted multilayer graphene grown by chemical vapor deposition
- Probing interlayer interactions and commensurate-incommensurate transition in twisted bilayer graphene through Raman spectroscopy
- Thermal transport of amorphous carbon and boron-nitride monolayers
- Data cluster analysis and machine learning for classification of twisted bilayer graphene
- Direction-Controlled Chemical Doping for Reversible G-Phonon Mixing in ABC Trilayer Graphene
- Micro-tip manipulated origami for robust twisted few-layer graphene
- Pseudomagnetic fields and strain engineering: graphene on GaN nanowires