Two-dimensional materials have unusual phonon spectra due to the presence of flexural (out-of-plane) modes. Although molecular dynamics simulations have been extensively used to study heat transport in such materials, conventional formalisms treat the phonon dynamics isotropically. Here, we decompose the microscopic heat current in atomistic simulations into in-plane and out-of-plane components, corresponding to in-plane and out-of-plane phonon dynamics, respectively. This decomposition allows for direct computation of the corresponding thermal conductivity components in two-dimensional materials. We apply this decomposition to study heat transport in suspended graphene, using both equilibrium and nonequilibrium molecular dynamics simulatio...
Grain boundaries in graphene are inherent in wafer-scale samples prepared by chemical vapor depositi...
In this study, we perform non-equilibrium molecular dynamics simulations to investigate phonon heat ...
We use first-principles methods based on density functional perturbation theory to characterize the ...
Two-dimensional materials have unusual phonon spectra due to the presence of flexural (out-of-plane)...
Two-dimensional materials have unusual phonon spectra due to the presence of flexural (out-of-plane)...
Graphene exhibits extraordinary electronic and mechanical properties, and extremely high thermal con...
Graphene exhibits extraordinary electronic and mechanical properties, and extremely high thermal con...
The thermal properties of the two novel 2D carbon allotropes with five-five-eight-membered rings are...
Based on first-principles calculations and full iterative solution of the linearized Boltzmann-Peier...
Despite the extensive research done on two-dimensional materials in recent years, little is still k...
The conduction of heat in two dimensions displays a wealth of fascinating phenomena of key relevance...
This article reviews recent numerical studies of thermal transport in graphene, with a focus on mole...
This article reviews recent numerical studies of thermal transport in graphene, with a focus on mole...
Grain boundaries in graphene are inherent in wafer-scale samples prepared by chemical vapor depositi...
We use first-principles methods based on density functional perturbation theory to characterize the ...
Grain boundaries in graphene are inherent in wafer-scale samples prepared by chemical vapor depositi...
In this study, we perform non-equilibrium molecular dynamics simulations to investigate phonon heat ...
We use first-principles methods based on density functional perturbation theory to characterize the ...
Two-dimensional materials have unusual phonon spectra due to the presence of flexural (out-of-plane)...
Two-dimensional materials have unusual phonon spectra due to the presence of flexural (out-of-plane)...
Graphene exhibits extraordinary electronic and mechanical properties, and extremely high thermal con...
Graphene exhibits extraordinary electronic and mechanical properties, and extremely high thermal con...
The thermal properties of the two novel 2D carbon allotropes with five-five-eight-membered rings are...
Based on first-principles calculations and full iterative solution of the linearized Boltzmann-Peier...
Despite the extensive research done on two-dimensional materials in recent years, little is still k...
The conduction of heat in two dimensions displays a wealth of fascinating phenomena of key relevance...
This article reviews recent numerical studies of thermal transport in graphene, with a focus on mole...
This article reviews recent numerical studies of thermal transport in graphene, with a focus on mole...
Grain boundaries in graphene are inherent in wafer-scale samples prepared by chemical vapor depositi...
We use first-principles methods based on density functional perturbation theory to characterize the ...
Grain boundaries in graphene are inherent in wafer-scale samples prepared by chemical vapor depositi...
In this study, we perform non-equilibrium molecular dynamics simulations to investigate phonon heat ...
We use first-principles methods based on density functional perturbation theory to characterize the ...