Van der Waals heterostructures have exhibited interesting physical properties. In this paper, heat transfer in hybrid coplanar bilayer/monolayer (BL-ML) graphene, as a model layered van der Waals heterostructure, was studied using non-equilibrium molecular dynamics (MD) simulations. The temperature profile and inter- and intra-layer heat fluxes of the BL-ML graphene indicated that, there is no fully developed thermal equilibrium between layers and the drop in the average temperature profile at the step-like BL-ML interface is not attributable to the effect of Kapitza resistance. By increasing the length of the system up to 1 μm in the studied MD simulations, the thermally non-equilibrium region was reduced to a small area near the step-like...
We study theoretically how energy and heat are transferred between the two-dimensional layers of bil...
ABSTRACT: We investigate here heat transfer across interfaces consisting of single- and few-layer gr...
We investigate here heat transfer across interfaces consisting of single- and few-layer graphene she...
Van der Waals heterostructures have exhibited interesting physical properties. In this paper, heat t...
The thermal conductivity of the graphene-encapsulated MoS<sub>2</sub> (graphene/MoS<sub>2</sub>/grap...
Step junctions are often present in layered materials, i.e. where single-layer regions meet multilay...
We use nonequilibrium molecular dynamics to study heat transfer across structures consisting of a fe...
Efficient thermal management of modern electronics requires the use of thin films with highly anisot...
Thermal management becomes increasingly important as the device size reduces to the nanosize. The in...
Layering two-dimensional van der Waals materials provides a high degree of control over atomic place...
Nano- to micron-sized monolayered materials of both carbon (graphene) and silicon (silicene) were mo...
We investigate the heat current flowing across the interface between graphene and hexagonal boron ni...
Interfaces usually impede heat transfer in heterogeneous structures. Recent experiments show that va...
By using molecular dynamics simulations, we have studied heat flux in graphene Y junctions with leng...
Graphene, hexagonal boron nitride (h-BN), and their heterostructures are promising thermal interface...
We study theoretically how energy and heat are transferred between the two-dimensional layers of bil...
ABSTRACT: We investigate here heat transfer across interfaces consisting of single- and few-layer gr...
We investigate here heat transfer across interfaces consisting of single- and few-layer graphene she...
Van der Waals heterostructures have exhibited interesting physical properties. In this paper, heat t...
The thermal conductivity of the graphene-encapsulated MoS<sub>2</sub> (graphene/MoS<sub>2</sub>/grap...
Step junctions are often present in layered materials, i.e. where single-layer regions meet multilay...
We use nonequilibrium molecular dynamics to study heat transfer across structures consisting of a fe...
Efficient thermal management of modern electronics requires the use of thin films with highly anisot...
Thermal management becomes increasingly important as the device size reduces to the nanosize. The in...
Layering two-dimensional van der Waals materials provides a high degree of control over atomic place...
Nano- to micron-sized monolayered materials of both carbon (graphene) and silicon (silicene) were mo...
We investigate the heat current flowing across the interface between graphene and hexagonal boron ni...
Interfaces usually impede heat transfer in heterogeneous structures. Recent experiments show that va...
By using molecular dynamics simulations, we have studied heat flux in graphene Y junctions with leng...
Graphene, hexagonal boron nitride (h-BN), and their heterostructures are promising thermal interface...
We study theoretically how energy and heat are transferred between the two-dimensional layers of bil...
ABSTRACT: We investigate here heat transfer across interfaces consisting of single- and few-layer gr...
We investigate here heat transfer across interfaces consisting of single- and few-layer graphene she...