4.3 Article

Molecular-dynamics simulations of silicene nanoribbons under strain

Related references

Note: Only part of the references are listed.
Article Chemistry, Physical

On the possibility of zigzag and armchair silicon nanoribbons having the graphene structure

Michael Miller et al.

CHEMICAL PHYSICS (2011)

Article Materials Science, Multidisciplinary

Silicene nanoribbons: Molecular-dynamics simulations

Alper Ince et al.

COMPUTATIONAL MATERIALS SCIENCE (2011)

Article Physics, Applied

Graphene-like silicon nanoribbons on Ag(110): A possible formation of silicene

Bernard Aufray et al.

APPLIED PHYSICS LETTERS (2010)

Article Physics, Condensed Matter

Silicene and transition metal based materials: prediction of a two-dimensional piezomagnet

Nelson Y. Dzade et al.

JOURNAL OF PHYSICS-CONDENSED MATTER (2010)

Article Materials Science, Multidisciplinary

Current-voltage (I-V) characteristics of armchair graphene nanoribbons under uniaxial strain

M. Topsakal et al.

PHYSICAL REVIEW B (2010)

Article Chemistry, Physical

Physics and chemistry of silicene nano-ribbons

G. Le Lay et al.

APPLIED SURFACE SCIENCE (2009)

Article Physics, Applied

Physics of Silicene Stripes

A. Kara et al.

JOURNAL OF SUPERCONDUCTIVITY AND NOVEL MAGNETISM (2009)

Article Physics, Multidisciplinary

Two- and One-Dimensional Honeycomb Structures of Silicon and Germanium

S. Cahangirov et al.

PHYSICAL REVIEW LETTERS (2009)

Article Chemistry, Physical

Graphene on metal surfaces

J. Wintterlin et al.

SURFACE SCIENCE (2009)

Article Materials Science, Multidisciplinary

Electronic structure of silicon-based nanostructures

Gian G. Guzman-Verri et al.

PHYSICAL REVIEW B (2007)

Article Chemistry, Physical

The rise of graphene

A. K. Geim et al.

NATURE MATERIALS (2007)

Article Multidisciplinary Sciences

Two-dimensional gas of massless Dirac fermions in graphene

KS Novoselov et al.

NATURE (2005)

Article Chemistry, Physical

Self-aligned silicon quantum wires on Ag(110)

C Leandri et al.

SURFACE SCIENCE (2005)

Article Multidisciplinary Sciences

Electric field effect in atomically thin carbon films

KS Novoselov et al.

SCIENCE (2004)

Article Nanoscience & Nanotechnology

Structural and electronic properties of bare and hydrogenated silicon clusters

S Katircioglu et al.

PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES (2001)

Article Materials Science, Multidisciplinary

Ab initio calculations for a hypothetical material:: Silicon nanotubes

SB Fagan et al.

PHYSICAL REVIEW B (2000)