In this Letter, the thermal conductivity of defective graphene is investigated by using non-equilibrium molecular dynamics simulations. It is found that various defects including single vacancy, double vacancy and Stone–Wales defects can greatly reduce the thermal conductivity of graphene. The amount of reduction depends strongly on the density and type of defects at small density level. However, at higher defect density level, the thermal conductivity of defective graphene decreases slowly with increasing defect density and shows marginal dependence on the defect type. The thermal conductivity is found to become less sensitive to temperature with increasing defect density
Through larger-scale molecular dynamics simulations, we investigated the impacts from vacancy-initia...
Through larger-scale molecular dynamics simulations, we investigated the impacts from vacancy-initia...
Graphene is a flat monolayer of carbon atoms arranged in a two-dimensional hexagonal lattice. It is ...
In this paper, the thermal properties of graphene oxide (GO) with vacancy defects were studied using...
Classical molecular dynamics with the AIREBO potential is used to investigate the thermal conductivi...
Classical molecular dynamics with the AIREBO potential is used to investigate the thermal conductivi...
Equilibrium molecular dynamics simulation using 2nd generation Reactive Bond Order interatomic poten...
We have performed molecular dynamics simulations to investigate phonon transport in graphene at 300 ...
In this study, the mechanical and thermal properties of graphene were systematically investigated us...
Classical molecular dynamics with the AIREBO potential is used to investigate and compare the therma...
Classical molecular dynamics with the AIREBO potential is used to investigate and compare the therma...
The roles of defects including monatomic vacancies and Stone-Wales dislocations in the mechanical an...
The thermal transport behavior of polycrystalline graphene is studied using molecular dynamics simul...
There are remarkable theoretical efforts geared towards understanding the impact of fabrication-indu...
It is shown that the experimentally observed increase of Young's modulus in single-layer graphene wi...
Through larger-scale molecular dynamics simulations, we investigated the impacts from vacancy-initia...
Through larger-scale molecular dynamics simulations, we investigated the impacts from vacancy-initia...
Graphene is a flat monolayer of carbon atoms arranged in a two-dimensional hexagonal lattice. It is ...
In this paper, the thermal properties of graphene oxide (GO) with vacancy defects were studied using...
Classical molecular dynamics with the AIREBO potential is used to investigate the thermal conductivi...
Classical molecular dynamics with the AIREBO potential is used to investigate the thermal conductivi...
Equilibrium molecular dynamics simulation using 2nd generation Reactive Bond Order interatomic poten...
We have performed molecular dynamics simulations to investigate phonon transport in graphene at 300 ...
In this study, the mechanical and thermal properties of graphene were systematically investigated us...
Classical molecular dynamics with the AIREBO potential is used to investigate and compare the therma...
Classical molecular dynamics with the AIREBO potential is used to investigate and compare the therma...
The roles of defects including monatomic vacancies and Stone-Wales dislocations in the mechanical an...
The thermal transport behavior of polycrystalline graphene is studied using molecular dynamics simul...
There are remarkable theoretical efforts geared towards understanding the impact of fabrication-indu...
It is shown that the experimentally observed increase of Young's modulus in single-layer graphene wi...
Through larger-scale molecular dynamics simulations, we investigated the impacts from vacancy-initia...
Through larger-scale molecular dynamics simulations, we investigated the impacts from vacancy-initia...
Graphene is a flat monolayer of carbon atoms arranged in a two-dimensional hexagonal lattice. It is ...