We present molecular dynamics simulations of monolayer graphene under uniaxial tensile loading. The Morse, bending angle, torsion and Lennard-Jones potential functions are adopted within the mdFOAM library in the OpenFOAM software, to describe the molecular interactions in graphene. A well-validated graphene model using these set of potentials is not yet available. In this work, we investigate the accuracy of the mechanical properties of graphene when derived using these simpler potentials, compared to the more commonly used complex potentials such as the Tersoff-Brenner and AIREBO potentials. The computational speed-up of our approach, which scales O(1.5N), where N is the number of carbon atoms, enabled us to vary a larger number of system...
Recent progress of simulations/modeling at the atomic level has led to a better understanding of the...
AbstractStructural, thermodynamic and mechanical properties of monolayer hexagonal graphene sheet ar...
Due to its unique mechanical properties, graphene can be applied for reinforcement in nanocomposites...
We present molecular dynamics simulations of monolayer graphene under uniaxial tensile loading. The ...
Matthew Borg and Konstantinos Ritos wish to acknowledge the financial support provided in the UK by ...
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...
The mechanical characteristics of single layer graphene sheet are studied in this work via molecular...
With a monolayer honeycomb-lattice of sp2-hybridized carbon atoms, graphene has demonstrated excepti...
Abstract With a monolayer honeycomb-lattice of sp2-hybridized carbon atoms, graphene has demonstrate...
Graphene is a flat monolayer of carbon atoms arranged in a two-dimensional hexagonal lattice. It is ...
Recent progress of simulations/modeling at the atomic level has led to a better understanding of the...
Recent progress of simulations/modeling at the atomic level has led to a better understanding of the...
Molecular dynamic simulation method has been employed to consider the mechanical properties of prist...
AbstractGraphene is the strongest material but its performance is significantly weakened by vacancy ...
Recent progress of simulations/modeling at the atomic level has led to a better understanding of the...
AbstractStructural, thermodynamic and mechanical properties of monolayer hexagonal graphene sheet ar...
Due to its unique mechanical properties, graphene can be applied for reinforcement in nanocomposites...
We present molecular dynamics simulations of monolayer graphene under uniaxial tensile loading. The ...
Matthew Borg and Konstantinos Ritos wish to acknowledge the financial support provided in the UK by ...
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...
The mechanical characteristics of single layer graphene sheet are studied in this work via molecular...
With a monolayer honeycomb-lattice of sp2-hybridized carbon atoms, graphene has demonstrated excepti...
Abstract With a monolayer honeycomb-lattice of sp2-hybridized carbon atoms, graphene has demonstrate...
Graphene is a flat monolayer of carbon atoms arranged in a two-dimensional hexagonal lattice. It is ...
Recent progress of simulations/modeling at the atomic level has led to a better understanding of the...
Recent progress of simulations/modeling at the atomic level has led to a better understanding of the...
Molecular dynamic simulation method has been employed to consider the mechanical properties of prist...
AbstractGraphene is the strongest material but its performance is significantly weakened by vacancy ...
Recent progress of simulations/modeling at the atomic level has led to a better understanding of the...
AbstractStructural, thermodynamic and mechanical properties of monolayer hexagonal graphene sheet ar...
Due to its unique mechanical properties, graphene can be applied for reinforcement in nanocomposites...