Grain boundaries in graphene are inherent in wafer-scale samples prepared by chemical vapor deposition. They can strongly influence the mechanical properties and electronic and heat transport in graphene. In this work, we employ extensive molecular dynamics simulations to study thermal transport in large suspended polycrystalline graphene samples. Samples of different controlled grain sizes are prepared by a recently developed efficient multiscale approach based on the phase field crystal model. In contrast to previous works, our results show that the scaling of the thermal conductivity with the grain size implies bimodal behavior with two effective Kapitza lengths. The scaling is dominated by the out-of-plane (flexural) phonons with a Kapi...
Graphene has served as the model 2D system for over a decade, and the effects of grain boundaries (G...
Graphene possesses exceptional electronic, optical, thermal, and mechanical properties which make it...
Graphene possesses exceptional electronic, optical, thermal, and mechanical properties which make it...
Grain boundaries in graphene are inherent in wafer-scale samples prepared by chemical vapor depositi...
© 2017 American Chemical Society. Grain boundaries in graphene are inherent in wafer-scale samples p...
© 2017 American Chemical Society. Grain boundaries in graphene are inherent in wafer-scale samples p...
© 2017 American Chemical Society. Grain boundaries in graphene are inherent in wafer-scale samples p...
We study heat transport across individual grain boundaries in suspended monolayer graphene using ext...
The thermal transport behavior of polycrystalline graphene is studied using molecular dynamics simul...
Approach-to-equilibrium molecular dynamics simulations have been used to study thermal transport in ...
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...
Approach-to-equilibrium molecular dynamics simulations have been used to study thermal transport in ...
Abstract Single grain boundaries of crystalline graphene with varying mismatch angles from 3° to 16°...
Abstract Single grain boundaries of crystalline graphene with varying mismatch angles from 3° to 16°...
Graphene has served as the model 2D system for over a decade, and the effects of grain boundaries (G...
Graphene possesses exceptional electronic, optical, thermal, and mechanical properties which make it...
Graphene possesses exceptional electronic, optical, thermal, and mechanical properties which make it...
Grain boundaries in graphene are inherent in wafer-scale samples prepared by chemical vapor depositi...
© 2017 American Chemical Society. Grain boundaries in graphene are inherent in wafer-scale samples p...
© 2017 American Chemical Society. Grain boundaries in graphene are inherent in wafer-scale samples p...
© 2017 American Chemical Society. Grain boundaries in graphene are inherent in wafer-scale samples p...
We study heat transport across individual grain boundaries in suspended monolayer graphene using ext...
The thermal transport behavior of polycrystalline graphene is studied using molecular dynamics simul...
Approach-to-equilibrium molecular dynamics simulations have been used to study thermal transport in ...
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...
Approach-to-equilibrium molecular dynamics simulations have been used to study thermal transport in ...
Abstract Single grain boundaries of crystalline graphene with varying mismatch angles from 3° to 16°...
Abstract Single grain boundaries of crystalline graphene with varying mismatch angles from 3° to 16°...
Graphene has served as the model 2D system for over a decade, and the effects of grain boundaries (G...
Graphene possesses exceptional electronic, optical, thermal, and mechanical properties which make it...
Graphene possesses exceptional electronic, optical, thermal, and mechanical properties which make it...