English

Two and one-dimensional honeycomb structures of silicon and germanium

Materials Science 2010-05-20 v4

Abstract

Based on first-principles calculations of structure optimization, phonon modes and finite temperature molecular dynamics, we predict that silicon and germanium have stable, two-dimensional, low-buckled, honeycomb structures. Similar to graphene, they are ambipolar and their charge carriers can behave like a massless Dirac fermions due to their pi- and pi*-bands which are crossed linearly at the Fermi level. In addition to these fundamental properties, bare and hydrogen passivated nanoribbons of Si and Ge show remarkable electronic and magnetic properties, which are size and orientation dependent. These properties offer interesting alternatives for the engineering of diverse nanodevices.

Keywords

Cite

@article{arxiv.0811.4412,
  title  = {Two and one-dimensional honeycomb structures of silicon and germanium},
  author = {Seymur Cahangirov and Mehmet Topsakal and Ethem Akturk and Hasan Sahin and Salim Ciraci},
  journal= {arXiv preprint arXiv:0811.4412},
  year   = {2010}
}

Comments

4 pages, 3 figures and 1 table. (published in Physical Review Letters)

R2 v1 2026-06-21T11:45:44.499Z