The structure, energetics and thermal behavior of all the SiGe nanotubes in armchair and zigzag structures (n = 4-10) and two atomic arrangement types are investigated using the ab initio method and classical molecular dynamics simulations. Gearlike and puckering configurations of SiGe nanotubes are obtained. The simulation results indicate that large-diameter nanotubes are more stable than small-diameter ones. Moreover, the type1 (alternating atom arrangement type) zigzag nanotubes are always more energetically favorable than the type2 (layered atom arrangement type) zigzag nanotubes. During the melting process, the melting-like structural transformations from the initial nanotube to the compact nanowire take place first, and then the comp...
We use molecular dynamics with a first-principles-based force field and density functional theory to...
The electronic structure and the transport properties of Si nanotubes with outer diameter between 2 ...
This study is an attempt to perform equilibrium molecular dynamics and non-equilibrium molecular dyn...
In this paper we present a theoretical study on single-wall silicon and III-V compound nanotubes. Fi...
Unusual physical properties of single-wall carbon nanotubes have started a search for similar tubula...
In this work, molecular dynamics (MD) simulation based on the environment-dependent interatomic pote...
In past years carbon nanotubes have been the subject of intensive experimental and theoretical effor...
We investigate the parametrization and optimization of thermal conductivity in silicon-germanium all...
We use molecular dynamics (MD) with a first principles-based force field (ReaxFF) and density functi...
The mechanical response of single-walled zigzag silicon-germanium nanotubes (SiGeNTs) under tensile ...
In this paper we demonstrate, using density-functional tight-binding theory, that certain classes of...
Molecular dynamics simulations using Tersoff potential were performed in order to study the evolutio...
In this paper, we introduce an idealized model of silicon nanotubes comprising an exact polyhedral g...
We study the formation of Si nanowires inside carbon nanotubes by using a combination of empirical m...
In this work we report new silicon and germanium tubular nanostructures with no corresponding stable...
We use molecular dynamics with a first-principles-based force field and density functional theory to...
The electronic structure and the transport properties of Si nanotubes with outer diameter between 2 ...
This study is an attempt to perform equilibrium molecular dynamics and non-equilibrium molecular dyn...
In this paper we present a theoretical study on single-wall silicon and III-V compound nanotubes. Fi...
Unusual physical properties of single-wall carbon nanotubes have started a search for similar tubula...
In this work, molecular dynamics (MD) simulation based on the environment-dependent interatomic pote...
In past years carbon nanotubes have been the subject of intensive experimental and theoretical effor...
We investigate the parametrization and optimization of thermal conductivity in silicon-germanium all...
We use molecular dynamics (MD) with a first principles-based force field (ReaxFF) and density functi...
The mechanical response of single-walled zigzag silicon-germanium nanotubes (SiGeNTs) under tensile ...
In this paper we demonstrate, using density-functional tight-binding theory, that certain classes of...
Molecular dynamics simulations using Tersoff potential were performed in order to study the evolutio...
In this paper, we introduce an idealized model of silicon nanotubes comprising an exact polyhedral g...
We study the formation of Si nanowires inside carbon nanotubes by using a combination of empirical m...
In this work we report new silicon and germanium tubular nanostructures with no corresponding stable...
We use molecular dynamics with a first-principles-based force field and density functional theory to...
The electronic structure and the transport properties of Si nanotubes with outer diameter between 2 ...
This study is an attempt to perform equilibrium molecular dynamics and non-equilibrium molecular dyn...