The integrity of phonon transport properties of large graphene (linear and curved) grain boundaries (GBs) is investigated under the influence of structural and dynamical disorder. To do this, density functional tight-binding (DFTB) method is combined with atomistic Green's function technique. The results show that curved GBs have lower thermal conductance than linear GBs. Its magnitude depends on the length of the curvature and out-of-plane structural distortions at the boundary, having stronger influence the latter one. Moreover, it is found that by increasing the defects at the boundary, the transport properties can strongly be reduced in comparison to the effect produced by heating up the boundary region. This is due to the large reducti...
Abstract Single grain boundaries of crystalline graphene with varying mismatch angles from 3° to 16°...
Equilibrium molecular dynamics simulations show that graphene nanoribbons (GNRs) with zigzag edges h...
Abstract Single grain boundaries of crystalline graphene with varying mismatch angles from 3° to 16°...
The integrity of phonon transport properties of large graphene (linear and curved) grain boundaries ...
The integrity of phonon transport properties of large graphene (linear and curved) grain boundaries ...
Graphene has served as the model 2D system for over a decade, and the effects of grain boundaries (G...
Graphene has served as the model 2D system for over a decade, and the effects of grain boundaries (G...
Graphene has served as the model 2D system for over a decade, and the effects of grain boundaries (G...
We investigate the thermal conductance of one-dimensional periodic width-modulated graphene nanoribb...
Graphene grain boundaries are known to affect phonon transport and thermal conductivity, suggesting ...
Grain boundaries can have a significant influence on the properties of polycrystalline materials. Wh...
Grain boundaries in graphene are inherent in wafer-scale samples prepared by chemical vapor depositi...
Heat transfer at lengths scales less than the mean free path of thermal energy carriers has emerged ...
Graphene grain boundaries are known to affect phonon transport and thermal conductivity, suggesting ...
We investigate the influence of low dimensionality and disorder in phonon transport in ultranarrow a...
Abstract Single grain boundaries of crystalline graphene with varying mismatch angles from 3° to 16°...
Equilibrium molecular dynamics simulations show that graphene nanoribbons (GNRs) with zigzag edges h...
Abstract Single grain boundaries of crystalline graphene with varying mismatch angles from 3° to 16°...
The integrity of phonon transport properties of large graphene (linear and curved) grain boundaries ...
The integrity of phonon transport properties of large graphene (linear and curved) grain boundaries ...
Graphene has served as the model 2D system for over a decade, and the effects of grain boundaries (G...
Graphene has served as the model 2D system for over a decade, and the effects of grain boundaries (G...
Graphene has served as the model 2D system for over a decade, and the effects of grain boundaries (G...
We investigate the thermal conductance of one-dimensional periodic width-modulated graphene nanoribb...
Graphene grain boundaries are known to affect phonon transport and thermal conductivity, suggesting ...
Grain boundaries can have a significant influence on the properties of polycrystalline materials. Wh...
Grain boundaries in graphene are inherent in wafer-scale samples prepared by chemical vapor depositi...
Heat transfer at lengths scales less than the mean free path of thermal energy carriers has emerged ...
Graphene grain boundaries are known to affect phonon transport and thermal conductivity, suggesting ...
We investigate the influence of low dimensionality and disorder in phonon transport in ultranarrow a...
Abstract Single grain boundaries of crystalline graphene with varying mismatch angles from 3° to 16°...
Equilibrium molecular dynamics simulations show that graphene nanoribbons (GNRs) with zigzag edges h...
Abstract Single grain boundaries of crystalline graphene with varying mismatch angles from 3° to 16°...