Structural properties of various type and position defected zinc oxide nanoribbons with armchair and zigzag edges have been investigated via classical molecular dynamics simulations. An atomistic potential energy function has been used to represent the interactions among the atoms. A uniaxial strain has been applied to the generated ZnO nanostructures at two different temperatures of 1 K and 300 K. It has been found that ZnO nanoribbons under strain application exhibit a structural change depending on the temperature; the position and type of the defect; and the edge geometries of the nanoribbons. (C) 2013 Elsevier B. V. All rights reserved
Abstract Mechanical properties of ultrathin zinc oxide (ZnO) nanowires of about 0.7-1.1 nm width and...
We report a previously unknown body-centered-tetragonal structure for ZnO. This structure results fr...
A novel stress-strain relation with two stages of linear elastic deformation is observed in [0 0 0 1...
Structural properties of zinc oxide nanoribbons have been investigated by performing classical molec...
Structural properties of defected zinc oxide nanosheets have been investigated by performing classic...
Structural properties of zinc oxide nanorods have been investigated by performing classical molecula...
Structural properties of zinc oxide nanotubes with zigzag, armchair and chiral geometries have been ...
Structural properties of zinc oxide (ZnO) nanoparticles and nanorings have been investigated by perf...
ZnO nanostructures revealed novel implementations in optoelectronics, sensors, transducers and biome...
Using molecular dynamics simulations, strain rate, temperature, size and orientation dependent mecha...
In this paper, the possibility of the monatomic chain (MC) formation for ZnO material was studied by...
By using molecular dynamics (MD) method, the tensile behavior of ultra-thin ZnO nanowires in <0001 >...
In this paper, the possibility of the monatomic chain (MC) formation for ZnO material was studied by...
An experimental and computational approach is pursued to investigate the fracture mechanism of [0001...
Formation of monoatomic chains by axial stretching of zinc oxide nanowires is investigated using mol...
Abstract Mechanical properties of ultrathin zinc oxide (ZnO) nanowires of about 0.7-1.1 nm width and...
We report a previously unknown body-centered-tetragonal structure for ZnO. This structure results fr...
A novel stress-strain relation with two stages of linear elastic deformation is observed in [0 0 0 1...
Structural properties of zinc oxide nanoribbons have been investigated by performing classical molec...
Structural properties of defected zinc oxide nanosheets have been investigated by performing classic...
Structural properties of zinc oxide nanorods have been investigated by performing classical molecula...
Structural properties of zinc oxide nanotubes with zigzag, armchair and chiral geometries have been ...
Structural properties of zinc oxide (ZnO) nanoparticles and nanorings have been investigated by perf...
ZnO nanostructures revealed novel implementations in optoelectronics, sensors, transducers and biome...
Using molecular dynamics simulations, strain rate, temperature, size and orientation dependent mecha...
In this paper, the possibility of the monatomic chain (MC) formation for ZnO material was studied by...
By using molecular dynamics (MD) method, the tensile behavior of ultra-thin ZnO nanowires in <0001 >...
In this paper, the possibility of the monatomic chain (MC) formation for ZnO material was studied by...
An experimental and computational approach is pursued to investigate the fracture mechanism of [0001...
Formation of monoatomic chains by axial stretching of zinc oxide nanowires is investigated using mol...
Abstract Mechanical properties of ultrathin zinc oxide (ZnO) nanowires of about 0.7-1.1 nm width and...
We report a previously unknown body-centered-tetragonal structure for ZnO. This structure results fr...
A novel stress-strain relation with two stages of linear elastic deformation is observed in [0 0 0 1...