Electronic structure of two-dimensional crystals from ab initio theory
Centre National de la Recherche Scientifique · Université de Lorraine · +2 more institutions
Abstract
We report on ab initio calculations of the two-dimensional systems ${\text{MoS}}_{2}$ and ${\text{NbSe}}_{2}$, which recently were synthesized. We find that two-dimensional ${\text{MoS}}_{2}$ is a semiconductor with a gap which is rather close to that of the three-dimensional analog, and that ${\text{NbSe}}_{2}$ is a metal, which is similar to the three-dimensional analog of this compound. We further computed the electronic structure of the two-dimensional hexagonal (graphene-like) lattices of Si and Ge and compared them with the electronic structure of graphene. It is found that the properties related to the Dirac cone do not appear in the case of two-dimensional hexagonal germanium, which is metallic,…
Citation impact
- FWCI
- 17.37
- Percentile
- 100%
- References
- 17
Authors
2Topics & keywords
- Silicene
- Graphene
- Ab initio
- Electronic structure
- Hexagonal crystal system
- Materials science
- Silicon
- Condensed matter physics