The deformation behavior of nanocrystalline graphene sheets is investigated by molecular dynamics (MD) simulation by coupling the effects of the temperature and strain rate. Mechanical deformation of graphene sheets, which is dominated by the competition between bond breaking and rotation, is essentially an atomic behavior. Similar to single-crystal graphene sheets, nanocrystalline graphene sheets usually exhibit bond breaking induced brittle fracture along grain boundaries after large elastic deformation. The elastic modulus decreases slightly with temperature as a result of softening but does not depend on the strain rate. A brittle-plastic transition by bond rotation and rearrangement under stress appears to occur at high temperature abo...
The effect of lattice orientation and crack length on the mechanical properties of Graphene are stud...
Graphyne is an allotrope of graphene. The mechanical properties of graphynes (α-, β-, γ- and 6,6,12-...
Herein the mechanical properties of graphene, including Young’s modulus, fracture stress and fractur...
We present a molecular modeling study analyzing nanometer-scale strain variations in graphene as a f...
Structural properties of pristine and defective graphene nanoribbons have been investigated by stret...
Based on molecular dynamic simulations, we investigate the effects of temperature and strain rate on...
In this study, the mechanical and thermal properties of graphene were systematically investigated us...
Graphene is a flat monolayer of carbon atoms arranged in a two-dimensional hexagonal lattice. It is ...
There is a growing interest in the strain engineering of 2D materials for applications in semiconduc...
With a hexagonal monolayer network of carbon atoms, graphene has demonstrated exceptional electrical...
Low-dimensional materials such as graphene exhibit superior electrical, mechanical and thermal prope...
Mechanics of polycrystalline graphene are studied through molecular dynamics simulations. Local buck...
The effect of intrinsic ripples on the mechanical response of the graphene monolayer is investigated...
We present dislocation simulations involving the collective behavior of partials and extended full d...
We present molecular dynamics simulations of monolayer graphene under uniaxial tensile loading. The ...
The effect of lattice orientation and crack length on the mechanical properties of Graphene are stud...
Graphyne is an allotrope of graphene. The mechanical properties of graphynes (α-, β-, γ- and 6,6,12-...
Herein the mechanical properties of graphene, including Young’s modulus, fracture stress and fractur...
We present a molecular modeling study analyzing nanometer-scale strain variations in graphene as a f...
Structural properties of pristine and defective graphene nanoribbons have been investigated by stret...
Based on molecular dynamic simulations, we investigate the effects of temperature and strain rate on...
In this study, the mechanical and thermal properties of graphene were systematically investigated us...
Graphene is a flat monolayer of carbon atoms arranged in a two-dimensional hexagonal lattice. It is ...
There is a growing interest in the strain engineering of 2D materials for applications in semiconduc...
With a hexagonal monolayer network of carbon atoms, graphene has demonstrated exceptional electrical...
Low-dimensional materials such as graphene exhibit superior electrical, mechanical and thermal prope...
Mechanics of polycrystalline graphene are studied through molecular dynamics simulations. Local buck...
The effect of intrinsic ripples on the mechanical response of the graphene monolayer is investigated...
We present dislocation simulations involving the collective behavior of partials and extended full d...
We present molecular dynamics simulations of monolayer graphene under uniaxial tensile loading. The ...
The effect of lattice orientation and crack length on the mechanical properties of Graphene are stud...
Graphyne is an allotrope of graphene. The mechanical properties of graphynes (α-, β-, γ- and 6,6,12-...
Herein the mechanical properties of graphene, including Young’s modulus, fracture stress and fractur...