Based on first-principles calculations and full iterative solution of the linearized Boltzmann-Peierls transport equation for phonons, we systematically investigate effects of strain, size and temperature on the thermal conductivity k of suspended graphene. The calculated size-dependent and temperature-dependent k for finite samples agree well with experimental data. The results show that, contrast to the convergent room-temperature k = 5450 W/m-K of unstrained graphene at a sample size ∼8 cm, k of strained graphene diverges with increasing the sample size even at high temperature. Out-of-plane acoustic phonons are responsible for the significant size effect in unstrained and strained graphene due to their ultralong mean free path and acous...
We characterize the thermal conductivity of graphite, monolayer graphene, graphane, fluorographane,...
In this paper, we address a physics-based closed-form analytical model of flexural phonon-dependent ...
Recent experiments have shown surprisingly large thermal time constants in suspended graphene rangin...
We use first-principles methods based on density functional perturbation theory to characterize the ...
We use first-principles methods based on density functional perturbation theory to characterize the ...
Graphene exhibits extraordinary electronic and mechanical properties, and extremely high thermal con...
Graphene exhibits extraordinary electronic and mechanical properties, and extremely high thermal con...
Understanding the mechanisms of thermal conduction in graphene is a longstanding research topic due ...
doi:10.1088/1367-2630/11/8/000000 Abstract. We review the results of our experimental investigation ...
Despite the extensive research done on two-dimensional materials in recent years, little is still k...
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)...
The study of graphene thermal conductivity is of great importance, as its anomalous thermal and elec...
Two-dimensional materials have unusual phonon spectra due to the presence of flexural (out-of-plane)...
Graphene is a single atomic sheet of graphite that exhibits a diverse range of unique properties. Th...
We characterize the thermal conductivity of graphite, monolayer graphene, graphane, fluorographane,...
In this paper, we address a physics-based closed-form analytical model of flexural phonon-dependent ...
Recent experiments have shown surprisingly large thermal time constants in suspended graphene rangin...
We use first-principles methods based on density functional perturbation theory to characterize the ...
We use first-principles methods based on density functional perturbation theory to characterize the ...
Graphene exhibits extraordinary electronic and mechanical properties, and extremely high thermal con...
Graphene exhibits extraordinary electronic and mechanical properties, and extremely high thermal con...
Understanding the mechanisms of thermal conduction in graphene is a longstanding research topic due ...
doi:10.1088/1367-2630/11/8/000000 Abstract. We review the results of our experimental investigation ...
Despite the extensive research done on two-dimensional materials in recent years, little is still k...
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)...
The study of graphene thermal conductivity is of great importance, as its anomalous thermal and elec...
Two-dimensional materials have unusual phonon spectra due to the presence of flexural (out-of-plane)...
Graphene is a single atomic sheet of graphite that exhibits a diverse range of unique properties. Th...
We characterize the thermal conductivity of graphite, monolayer graphene, graphane, fluorographane,...
In this paper, we address a physics-based closed-form analytical model of flexural phonon-dependent ...
Recent experiments have shown surprisingly large thermal time constants in suspended graphene rangin...