Nano- to micron-sized monolayered materials of both carbon (graphene) and silicon (silicene) were modeled with molecular dynamics. Graphene was modeled using an optimized parameterization of the Tersoff potential, while silicene was modeled using parameterizations of the Tersoff potential for silicon. Thermal conductivities were determined from direct non-equilibrium molecular dynamics. The present results indicate that as the lengths of both materials increased, the corresponding thermal conductivities increased as well, such that graphene had far higher thermal conductivity than silicene across all length scales. Armchair and zigzag chiralities in both graphene and silicene had no significant differences in thermal conductivities, given t...
Two-dimensional materials have unusual phonon spectra due to the presence of flexural (out-of-plane)...
Two-dimensional (2D) nanomaterials have attracted intensive interest in the past decades owing to th...
The thermal transport behavior of polycrystalline graphene is studied using molecular dynamics simul...
Abstract. We have used classical molecular dynamics based on the Brenner potential to calculate the ...
The thermal properties of the two novel 2D carbon allotropes with five-five-eight-membered rings are...
Graphene exhibits extraordinary electronic and mechanical properties, and extremely high thermal con...
The thermal conductivity of graphene nanoribbons (GNRs) has been investigated using equilibrium mole...
Graphene exhibits extraordinary electronic and mechanical properties, and extremely high thermal con...
We characterize the thermal conductivity of graphite, monolayer graphene, graphane, fluorographane, ...
In the sample size domain so far explored, the thermal conductivity of graphene shows an intriguing ...
The thermal conductivity of penta-graphene (PG), a new two dimensional carbon allotrope and its depe...
The thermal conductivity of the graphene-encapsulated MoS<sub>2</sub> (graphene/MoS<sub>2</sub>/grap...
Graphene, a 2D layer of sp(2) bonded carbon atoms in honeycomb arrangement, is a recently synthesize...
Thermal management becomes increasingly important as the device size reduces to the nanosize. The in...
We characterize the thermal conductivity of graphite, monolayer graphene, graphane, fluorographane,...
Two-dimensional materials have unusual phonon spectra due to the presence of flexural (out-of-plane)...
Two-dimensional (2D) nanomaterials have attracted intensive interest in the past decades owing to th...
The thermal transport behavior of polycrystalline graphene is studied using molecular dynamics simul...
Abstract. We have used classical molecular dynamics based on the Brenner potential to calculate the ...
The thermal properties of the two novel 2D carbon allotropes with five-five-eight-membered rings are...
Graphene exhibits extraordinary electronic and mechanical properties, and extremely high thermal con...
The thermal conductivity of graphene nanoribbons (GNRs) has been investigated using equilibrium mole...
Graphene exhibits extraordinary electronic and mechanical properties, and extremely high thermal con...
We characterize the thermal conductivity of graphite, monolayer graphene, graphane, fluorographane, ...
In the sample size domain so far explored, the thermal conductivity of graphene shows an intriguing ...
The thermal conductivity of penta-graphene (PG), a new two dimensional carbon allotrope and its depe...
The thermal conductivity of the graphene-encapsulated MoS<sub>2</sub> (graphene/MoS<sub>2</sub>/grap...
Graphene, a 2D layer of sp(2) bonded carbon atoms in honeycomb arrangement, is a recently synthesize...
Thermal management becomes increasingly important as the device size reduces to the nanosize. The in...
We characterize the thermal conductivity of graphite, monolayer graphene, graphane, fluorographane,...
Two-dimensional materials have unusual phonon spectra due to the presence of flexural (out-of-plane)...
Two-dimensional (2D) nanomaterials have attracted intensive interest in the past decades owing to th...
The thermal transport behavior of polycrystalline graphene is studied using molecular dynamics simul...