Vertical integration of 2D materials has recently appeared as an effective method for the design of novel nano-scale devices. Using non-equilibrium molecular dynamics simulations, we study the interfacial thermal transport property of graphene/phosphorene heterostructures where phosphorene is sandwiched in between graphene. Various modulation techniques are thoroughly explored. We found that the interfacial thermal conductance at the interface of graphene and phosphorene can be enhanced significantly by using vacancy defects, hydrogenation and cross-plane compressive strain. By contrast, the reduction in the interfacial thermal conductance can be achieved by using cross-plane tensile strain. Our results provide important guidelines for mani...
Exploring thermal transport in graphene-polymer nanocomposite is significant to its applications wit...
The synthesis of two-dimensional lateral structures is often associated with compositional transitio...
We studied the heat-spreading enhancement of supported few-layer graphene by inserting silane-functi...
Vertical integration of 2D materials has recently appeared as an effective method for the design of ...
Graphene, as a passivation layer, can be used to protect the black phosphorus (BP) from the chemical...
Phosphorene, a new two-dimensional (2D) semiconducting material, has attracted tremendous attention ...
Phosphorene is a recently discovered member of the two-dimensional (2D) monolayer materials, which h...
Thermal transport is critical in engineering system design, as it directly affects the stability, du...
Enhancing thermal energy transport is critical for the applications of 2-dimensional materials. Here...
Owing to the superior thermal conductivity of graphene, nanocomposites with graphene fillers dispers...
ABSTRACT: We investigate here heat transfer across interfaces consisting of single- and few-layer gr...
We report the study of the thermal transport management of monolayer graphene allotrope nanoribbons ...
The rapid advance in modern electronics and photonics is pushing device design to the micro- and nan...
The interfacial thermal energy transport ability of graphene (GR)/hexagonal boron nitride (h-BN) het...
Thermal transport in low dimensional materials play a critical role in the functionality and reliabi...
Exploring thermal transport in graphene-polymer nanocomposite is significant to its applications wit...
The synthesis of two-dimensional lateral structures is often associated with compositional transitio...
We studied the heat-spreading enhancement of supported few-layer graphene by inserting silane-functi...
Vertical integration of 2D materials has recently appeared as an effective method for the design of ...
Graphene, as a passivation layer, can be used to protect the black phosphorus (BP) from the chemical...
Phosphorene, a new two-dimensional (2D) semiconducting material, has attracted tremendous attention ...
Phosphorene is a recently discovered member of the two-dimensional (2D) monolayer materials, which h...
Thermal transport is critical in engineering system design, as it directly affects the stability, du...
Enhancing thermal energy transport is critical for the applications of 2-dimensional materials. Here...
Owing to the superior thermal conductivity of graphene, nanocomposites with graphene fillers dispers...
ABSTRACT: We investigate here heat transfer across interfaces consisting of single- and few-layer gr...
We report the study of the thermal transport management of monolayer graphene allotrope nanoribbons ...
The rapid advance in modern electronics and photonics is pushing device design to the micro- and nan...
The interfacial thermal energy transport ability of graphene (GR)/hexagonal boron nitride (h-BN) het...
Thermal transport in low dimensional materials play a critical role in the functionality and reliabi...
Exploring thermal transport in graphene-polymer nanocomposite is significant to its applications wit...
The synthesis of two-dimensional lateral structures is often associated with compositional transitio...
We studied the heat-spreading enhancement of supported few-layer graphene by inserting silane-functi...