Atomic and electronic structure of monolayer graphene on 6H-SiC(000-1)(3 x 3) : a scanning tunneling microscopy study
arXiv:0912.0810 · doi:10.1103/PhysRevB.80.235429
Abstract
We present an investigation of the atomic and electronic structure of graphene monolayer islands on the 6H-SiC(000-1)(3x3) (SiC(3x3)) surface reconstruction using scanning tunneling microscopy (STM) and spectroscopy (STS). The orientation of the graphene lattice changes from one island to the other. In the STM images, this rotational disorder gives rise to various superlattices with periods in the nm range. We show that those superlattices are moiré patterns (MPs) and we correlate their apparent height with the stacking at the graphene/SiC(3x3) interface. The contrast of the MP in STM images corresponds to a small topographic modulation of the graphene layer. From STS measurements we find that the substrate surface presents a 1,5 eV wide bandgap encompassing the Fermi level. This substrate surface bandgap subsists below the graphene plane. The tunneling spectra are spatially homogeneous on the islands within the substrate surface gap, which shows that the MPs do not impact the low energy electronic structure of graphene. We conclude that the SiC(3 x 3) reconstruction efficiently passivates the substrate surface and that the properties of the graphene layer which grows on top of it should be similar to those of the ideal material.
24 pages, 6 figures, To be published in Phys. Rev. B
References in corpus (29)
- Electric Field Effect in Atomically Thin Carbon Films
- The electronic properties of graphene
- Ultrahigh electron mobility in suspended graphene
- Detection of Individual Gas Molecules Absorbed on Graphene
- Chiral tunneling and the Klein paradox in graphene
- Ultrathin epitaxial graphite: 2D electron gas properties and a route toward graphene-based nanoelectronics
- Suspended Graphene: a bridge to the Dirac point
- Substrate-induced band gap opening in epitaxial graphene
- Chaotic Dirac billiard in graphene quantum dots
- Temperature dependent transport in suspended graphene
- Quantum interference and Klein tunneling in graphene heterojunctions
- Veselago Lens for Electrons: Focusing and Caustics in Graphene p-n Junctions
- Weak localisation magnetoresistance and valley symmetry in graphene
- Epitaxial graphene
- Anisotropic behaviors of massless Dirac fermions in graphene under periodic potential
- Periodically rippled graphene: growth and spatially resolved electronic structure
- Dirac Cones and Minigaps for Graphene on Ir(111)
- Ab initio Study of Graphene on SiC
- Origins of anomalous electronic structures of epitaxial graphene on silicon carbide
- Weak antilocalization in epitaxial graphene: evidence for chiral electrons
- Electron states of mono- and bilayer graphene on SiC probed by STM
- Unit cell of graphene on Ru(0001): a 25 x 25 supercell with 1250 carbon atoms
- Scanning tunneling spectroscopy of inhomogeneous electronic structure in monolayer and bilayer graphene on SiC
- Is graphene on Ru(0001) a nanomesh?
- Imaging the interface of epitaxial graphene with silicon carbide via scanning tunneling microscopy
- Few layers graphene on 6H-SiC(000-1): an STM study
- The structural properties of the multi-layer graphene/4H-SiC(000-1) system as determined by Surface X-ray Diffraction
- Origin of the energy bandgap in epitaxial graphene
- Quasiparticle Chirality in Epitaxial Graphene Probed at the Nanometer Scale
Cited by in corpus (14)
- Highly efficient spin transport in epitaxial graphene on SiC
- Point Defects and Grain Boundaries in Rotationally Commensurate MoS2 on Epitaxial Graphene
- Preferential antiferromagnetic coupling of vacancies in graphene on SiO_2: Electron spin resonance and scanning tunneling spectroscopy
- Why graphene growth is very different on the C face than on the Si face of SiC: Insights from surface equilibria and the (33)-3C-SiC() reconstruction
- Graphene on the carbon face of SiC: electronic structure modification by hydrogen intercalation
- How to induce superconductivity in epitaxial graphene remote proximity effect through an intercalated gold layer
- Landau level splitting due to graphene superlattices
- Single-layer metallicity and interface magnetism of epitaxial graphene on SiC(000)
- Playing graphene nanodrums: force spectroscopy of graphene on Ru(0001)
- Impact of local stacking on the graphene-impurity interaction: theory and experiments
- Formation of Graphene atop a Si adlayer on the C-face of SiC
- Angular dependence of the interlayer coupling at the interface between two dimensional materials 1T-PtSe and graphene
- Scanning Tunneling Microscopy and Spectroscopy study of charge inhomogeneities in bilayer Graphene
- Defect-Mediated Phase Engineering of 2D Ag at the Graphene/SiC Interface