We study the structural properties of the indium phosphide nanorods of different thickness in zinc blende and wurtzite phases by performing classical molecular dynamics simulations using an inter-atomic potential. In addition to different temperatures, the nanorods are also investigated under strain and compression. When the stretch is applied, simulations reveal that the sequence of the irreversible structural transformation for the zinc blende nanorods is zinc blende -> rock salt -> wurtzite and the wurtzite nanorods follow the sequence of wurtzite -> rock salt. After the wurtzite nanorods are compressed and stretched back, the thinner nanorods recover their initial non-deformed structure. Upon heating without stretching, the zinc blende ...
We demonstrate how growth parameters may be adopted to produce morphologically controlled high-quali...
Molecular dynamics (MD) is employed to investigate the plastic deformation mechanisms of single crys...
Semiconducting nanowires offer the possibility of nearly unlimited complex bottom-up design, which a...
Structural and thermal properties of Indium Phosphide spherical nanoparticles at various sizes have ...
We employ high-temperature ab initio molecular dynamics (AIMD) as a sampling approach to discover lo...
The structural and electronic properties and phase transition under pressure of Indium phosphide in ...
Structural properties of silicon nanorods generated from low-index plane surfaces (100), (110), and ...
We employ high-temperature ab initio molecular dynamics (AIMD) as a sampling approach to discover lo...
Nanocrystals in the size range 12-21 nm of a model binary ionic material in the wurtzite (B4) struct...
With classical molecular dynamics simulations, we demonstrated that doping of the InP crystal with Z...
The reorganisation of nanocrystals in order to reduce their surface energies has been examined in co...
This article is concerned with incipient plasticity in an InP crystal studied by nanoindentation exp...
Structural properties of zinc oxide nanorods have been investigated by performing classical molecula...
Structural properties of beta-Fe2O3 nanorods under uniaxial strain have been investigated by perform...
Structural properties of zinc oxide (ZnO) nanoparticles and nanorings have been investigated by perf...
We demonstrate how growth parameters may be adopted to produce morphologically controlled high-quali...
Molecular dynamics (MD) is employed to investigate the plastic deformation mechanisms of single crys...
Semiconducting nanowires offer the possibility of nearly unlimited complex bottom-up design, which a...
Structural and thermal properties of Indium Phosphide spherical nanoparticles at various sizes have ...
We employ high-temperature ab initio molecular dynamics (AIMD) as a sampling approach to discover lo...
The structural and electronic properties and phase transition under pressure of Indium phosphide in ...
Structural properties of silicon nanorods generated from low-index plane surfaces (100), (110), and ...
We employ high-temperature ab initio molecular dynamics (AIMD) as a sampling approach to discover lo...
Nanocrystals in the size range 12-21 nm of a model binary ionic material in the wurtzite (B4) struct...
With classical molecular dynamics simulations, we demonstrated that doping of the InP crystal with Z...
The reorganisation of nanocrystals in order to reduce their surface energies has been examined in co...
This article is concerned with incipient plasticity in an InP crystal studied by nanoindentation exp...
Structural properties of zinc oxide nanorods have been investigated by performing classical molecula...
Structural properties of beta-Fe2O3 nanorods under uniaxial strain have been investigated by perform...
Structural properties of zinc oxide (ZnO) nanoparticles and nanorings have been investigated by perf...
We demonstrate how growth parameters may be adopted to produce morphologically controlled high-quali...
Molecular dynamics (MD) is employed to investigate the plastic deformation mechanisms of single crys...
Semiconducting nanowires offer the possibility of nearly unlimited complex bottom-up design, which a...