We report the enhancement of the thermoelectric power (TEP) in graphene with extremely low disorder. At high temperature we observe that the TEP is substantially larger than the prediction of the Mott relation, approaching to the hydrodynamic limit due to strong inelastic scattering among the charge carriers. However, closer to room temperature the inelastic carrierヨoptical-phonon scattering becomes more significant and limits the TEP below the hydrodynamic prediction. We support our observation by employing a Boltzmann theory incorporating disorder, electron interactions, and optical phonons
We present a qualitative and quantitative study of the magneto-thermoelectric effect of graphene. In...
Induced disorder in graphene enables changes in the electrical and thermal transport. It has been sh...
In the 2016 experiment by Crossno et al. the electronic contribution to the thermal conductivity of ...
We study the electric and thermal transport of the Dirac carriers in monolayer graphene using the Bo...
The ability to transport energy is a fundamental property of the two-dimensional Dirac fermions in g...
The ability to transport energy is a fundamental property of the two-dimensional Dirac fermions in g...
Thermoelectric power (TEP) is measured in bilayer graphene for various temperatures and charge-carri...
International audienceThe enhancement of thermoelectric figure of merit ZT requires to either increa...
International audienceThe enhancement of thermoelectric figure of merit ZT requires to either increa...
We have studied temperature dependences of electron transport in graphene and its bilayer and found ...
We have studied temperature dependences of electron transport in graphene and its bilayer and found ...
We have studied temperature dependences of electron transport in graphene and its bilayer and found ...
We numerically study the thermoelectric transports of Dirac fermions in graphene in the presence of ...
Induced disorder in graphene enables changes in electrical and thermal transport. It has been shown ...
This thesis discusses the elastic and inelastic scattering in monolayer graphene, investigated by me...
We present a qualitative and quantitative study of the magneto-thermoelectric effect of graphene. In...
Induced disorder in graphene enables changes in the electrical and thermal transport. It has been sh...
In the 2016 experiment by Crossno et al. the electronic contribution to the thermal conductivity of ...
We study the electric and thermal transport of the Dirac carriers in monolayer graphene using the Bo...
The ability to transport energy is a fundamental property of the two-dimensional Dirac fermions in g...
The ability to transport energy is a fundamental property of the two-dimensional Dirac fermions in g...
Thermoelectric power (TEP) is measured in bilayer graphene for various temperatures and charge-carri...
International audienceThe enhancement of thermoelectric figure of merit ZT requires to either increa...
International audienceThe enhancement of thermoelectric figure of merit ZT requires to either increa...
We have studied temperature dependences of electron transport in graphene and its bilayer and found ...
We have studied temperature dependences of electron transport in graphene and its bilayer and found ...
We have studied temperature dependences of electron transport in graphene and its bilayer and found ...
We numerically study the thermoelectric transports of Dirac fermions in graphene in the presence of ...
Induced disorder in graphene enables changes in electrical and thermal transport. It has been shown ...
This thesis discusses the elastic and inelastic scattering in monolayer graphene, investigated by me...
We present a qualitative and quantitative study of the magneto-thermoelectric effect of graphene. In...
Induced disorder in graphene enables changes in the electrical and thermal transport. It has been sh...
In the 2016 experiment by Crossno et al. the electronic contribution to the thermal conductivity of ...