Phosphorene, a new two-dimensional (2D) semiconducting material, has attracted tremendous attention recently. However, its structural instability at ambient conditions poses a great challenge to its practical applications. A possible solution for this problem is to encapsulate phosphorene with more stable 2D materials, such as graphene, forming van der Waals heterostructures. In this study, using molecular dynamics simulations, we show that the thermal stability of phosphorene in phosphorene/graphene heterostructures can be enhanced significantly. By sandwiching phosphorene between two graphene sheets, its thermally stable temperature is increased by 150 K. We further study the thermal transport properties of phosphorene and find surprising...
We introduce the 2D counterpart of layered black phosphorus, which we call phosphorene, as an unexpl...
In this study, we perform non-equilibrium molecular dynamics simulations to investigate phonon heat ...
Graphene exhibits extraordinary electronic and mechanical properties, and extremely high thermal con...
Vertical integration of 2D materials has recently appeared as an effective method for the design of ...
Phosphorene is a recently discovered member of the two-dimensional (2D) monolayer materials, which h...
Graphene, as a passivation layer, can be used to protect the black phosphorus (BP) from the chemical...
<p>Using first principles calculations, we predict the thermal conductivity of the two-dimensional m...
Strain engineering is an effective way to tune the thermal and electrical properties of novel two-di...
Using detailed first-principles calculations, we investigate the hopping rate of vacancies in phosph...
Phosphorus has diverse chemical bonds, and even in its two-dimensional form, there are three stable ...
Graphene exhibits extraordinary electronic and mechanical properties, and extremely high thermal con...
Phosphorene, the single- or few-layer form of black phosphorus, was recently rediscovered as a two-d...
We present a comprehensive study of the structural and electronic properties of a graphene/ phosphor...
The thermal conductivity of the graphene-encapsulated MoS<sub>2</sub> (graphene/MoS<sub>2</sub>/grap...
Two-dimensional (2D) materials are the focal point of intensive research efforts due to their unique...
We introduce the 2D counterpart of layered black phosphorus, which we call phosphorene, as an unexpl...
In this study, we perform non-equilibrium molecular dynamics simulations to investigate phonon heat ...
Graphene exhibits extraordinary electronic and mechanical properties, and extremely high thermal con...
Vertical integration of 2D materials has recently appeared as an effective method for the design of ...
Phosphorene is a recently discovered member of the two-dimensional (2D) monolayer materials, which h...
Graphene, as a passivation layer, can be used to protect the black phosphorus (BP) from the chemical...
<p>Using first principles calculations, we predict the thermal conductivity of the two-dimensional m...
Strain engineering is an effective way to tune the thermal and electrical properties of novel two-di...
Using detailed first-principles calculations, we investigate the hopping rate of vacancies in phosph...
Phosphorus has diverse chemical bonds, and even in its two-dimensional form, there are three stable ...
Graphene exhibits extraordinary electronic and mechanical properties, and extremely high thermal con...
Phosphorene, the single- or few-layer form of black phosphorus, was recently rediscovered as a two-d...
We present a comprehensive study of the structural and electronic properties of a graphene/ phosphor...
The thermal conductivity of the graphene-encapsulated MoS<sub>2</sub> (graphene/MoS<sub>2</sub>/grap...
Two-dimensional (2D) materials are the focal point of intensive research efforts due to their unique...
We introduce the 2D counterpart of layered black phosphorus, which we call phosphorene, as an unexpl...
In this study, we perform non-equilibrium molecular dynamics simulations to investigate phonon heat ...
Graphene exhibits extraordinary electronic and mechanical properties, and extremely high thermal con...