The mechanical response of zinc oxide nanowires under uniaxial tensile loading is investigated by molecular dynamics and supported by density functional calculations. Previous theoretical works predict a stress-induced phase transition which has not been observed experimentally in zinc oxide nanowires up to date. Here, we report an explanation for such a discrepancy. Our simulations reveal brittle failure at room temperature without phase transformation, in agreement with experiments. Interestingly, we also find that if the temperature is raised to 600 K, the phase transition occurs. A detailed reaction mechanism is proposed. For the first time, the associated rate constant has been calculated. Based on these results we propose an experimen...
Atomistic simulations are utilized to demonstrate a strain-induced phase transformation in Zinc Oxid...
Structural properties of zinc oxide nanoribbons have been investigated by performing classical molec...
One dimensional nanostructures, like nanowires and nanotubes, are increasingly b...
Abstract There is a long standing contradiction on the tensile response of zinc oxide nanowires betw...
Formation of monoatomic chains by axial stretching of zinc oxide nanowires is investigated using mol...
An experimental and computational approach is pursued to investigate the fracture mechanism of [0001...
ABSTRACT Electromechanical and photonic properties of semiconducting nanowires depend on their strai...
Abstract Mechanical properties of ultrathin zinc oxide (ZnO) nanowires of about 0.7-1.1 nm width and...
Molecular dynamics (MD) simulations and first-principles calculations are carried out to analyze the...
Using molecular dynamics simulations, strain rate, temperature, size and orientation dependent mecha...
By using molecular dynamics (MD) method, the tensile behavior of ultra-thin ZnO nanowires in <0001 >...
A novel stress-strain relation with two stages of linear elastic deformation is observed in [0 0 0 1...
The advent of nanomaterials has opened a new avenue for designing and fabricating materials with uni...
To ensure reliability and facilitate the strain engineering of zinc oxide (ZnO) nanowires (NWs), it ...
A novel stress induced martenistic phase transformation is reported in an initial B2-CuZr nanowire ...
Atomistic simulations are utilized to demonstrate a strain-induced phase transformation in Zinc Oxid...
Structural properties of zinc oxide nanoribbons have been investigated by performing classical molec...
One dimensional nanostructures, like nanowires and nanotubes, are increasingly b...
Abstract There is a long standing contradiction on the tensile response of zinc oxide nanowires betw...
Formation of monoatomic chains by axial stretching of zinc oxide nanowires is investigated using mol...
An experimental and computational approach is pursued to investigate the fracture mechanism of [0001...
ABSTRACT Electromechanical and photonic properties of semiconducting nanowires depend on their strai...
Abstract Mechanical properties of ultrathin zinc oxide (ZnO) nanowires of about 0.7-1.1 nm width and...
Molecular dynamics (MD) simulations and first-principles calculations are carried out to analyze the...
Using molecular dynamics simulations, strain rate, temperature, size and orientation dependent mecha...
By using molecular dynamics (MD) method, the tensile behavior of ultra-thin ZnO nanowires in <0001 >...
A novel stress-strain relation with two stages of linear elastic deformation is observed in [0 0 0 1...
The advent of nanomaterials has opened a new avenue for designing and fabricating materials with uni...
To ensure reliability and facilitate the strain engineering of zinc oxide (ZnO) nanowires (NWs), it ...
A novel stress induced martenistic phase transformation is reported in an initial B2-CuZr nanowire ...
Atomistic simulations are utilized to demonstrate a strain-induced phase transformation in Zinc Oxid...
Structural properties of zinc oxide nanoribbons have been investigated by performing classical molec...
One dimensional nanostructures, like nanowires and nanotubes, are increasingly b...