AbstractThe elastic properties of ZnO nanofilms with different film thickness, surface orientations and loading directions are investigated by using molecular mechanics (MM) method. The size dependence of elastic properties is relevant to both the film surface crystallographic orientation and loading direction. Both atomic structure analysis and energy calculation are employed to identify the mechanisms of the size-dependent elastic properties, under different loading directions and surface orientations. Upon small axial deformation, the relationship between intralayer and interlayer bond length variation and film elastic stiffness is established; it is found that the atomic layers with larger bond length variation have higher elastic stiff...
Mechanical properties of ZnS nanowires and thin films are studied as a function of size and growth d...
Understanding the mechanical properties of nanowires made of semiconducting materials is central to ...
A theoretical model is presented to investigate the size-dependent elastic moduli of nanostructures ...
AbstractThe elastic properties of ZnO nanofilms with different film thickness, surface orientations ...
The Young’s modulus of ZnO nanobelts was measured with an atomic force microscope by means of the mo...
Although studies of ZnO nanostructured materials have concentrated on the electric, optical, and mag...
The Young’s modulus of ZnO nanobelts was measured using an atomic force microscope following the mod...
Recently, people are confused with two opposite variations of elastic modulus with decreasing size o...
Size-dependent elastic properties of Ni nanofilms are investigated by molecular dynamics ( MD) simul...
A simple theoretical method is proposed to study the size and orientation dependence of elasticity o...
In this investigation, the size-scale in mechanical properties of individual [0001] ZnO nanowires an...
We measure the elastic modulus of a single horizontal ZnO nanorod [NR] grown by a low-temperature hy...
This work aims to study the effect of bending to the structural integrity and electrical properties...
By using molecular dynamics (MD) method, the tensile behavior of ultra-thin ZnO nanowires in <0001 >...
Using molecular dynamics simulations, strain rate, temperature, size and orientation dependent mecha...
Mechanical properties of ZnS nanowires and thin films are studied as a function of size and growth d...
Understanding the mechanical properties of nanowires made of semiconducting materials is central to ...
A theoretical model is presented to investigate the size-dependent elastic moduli of nanostructures ...
AbstractThe elastic properties of ZnO nanofilms with different film thickness, surface orientations ...
The Young’s modulus of ZnO nanobelts was measured with an atomic force microscope by means of the mo...
Although studies of ZnO nanostructured materials have concentrated on the electric, optical, and mag...
The Young’s modulus of ZnO nanobelts was measured using an atomic force microscope following the mod...
Recently, people are confused with two opposite variations of elastic modulus with decreasing size o...
Size-dependent elastic properties of Ni nanofilms are investigated by molecular dynamics ( MD) simul...
A simple theoretical method is proposed to study the size and orientation dependence of elasticity o...
In this investigation, the size-scale in mechanical properties of individual [0001] ZnO nanowires an...
We measure the elastic modulus of a single horizontal ZnO nanorod [NR] grown by a low-temperature hy...
This work aims to study the effect of bending to the structural integrity and electrical properties...
By using molecular dynamics (MD) method, the tensile behavior of ultra-thin ZnO nanowires in <0001 >...
Using molecular dynamics simulations, strain rate, temperature, size and orientation dependent mecha...
Mechanical properties of ZnS nanowires and thin films are studied as a function of size and growth d...
Understanding the mechanical properties of nanowires made of semiconducting materials is central to ...
A theoretical model is presented to investigate the size-dependent elastic moduli of nanostructures ...