Abstract Fano resonances of bilayer graphene could be attractive for thermoelectric devices. The special profile presented by such resonances could significantly enhance the thermoelectric properties. In this work, we study the thermoelectric properties of bilayer graphene single and double barrier structures. The barrier structures are typically supported by a substrate and encapsulated by protecting layers, reducing considerably the phonon thermal transport. So, we will focus on the electronic contribution to the thermal transport. The charge carriers are described as massive chiral particles through an effective Dirac-like Hamiltonian. The Hybrid matrix method and the Landauer–Büttiker formalism are implemented to obtain the transmission...
We numerically study the thermoelectric and thermal transport in ABA-stacked trilayer graphene in th...
Although it was demonstrated that discrete molecular levels determine the sign and magnitude of the ...
We show that the thermoelectric properties of nanoscale junctions featuring states near the Fermi le...
We numerically study the thermoelectric transport in AB- and AA-stacked bilayer graphene in the pres...
We numerically study the disorder effect on the thermoelectric and thermal transport in bilayer grap...
Graphene, a single atomic layer of graphite, has emerged as one of the most attractive materials in ...
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...
Graphene is a newly discovered material. It has many excellent properties, which make the research o...
© 2017 Dr. Md Sharafat HossainThe field of thermoelectrics has the potential to solve many problems ...
We study the thermoelectric properties of rectangular graphene rings connected symmetrically or asym...
Many efforts have been made to search for materials that maximize the thermoelectric (TE) figure of ...
Although it was demonstrated that discrete molecular levels determine the sign and magnitude of the ...
We study the thermoelectric properties of an electronic localized level coupled to two graphene elec...
Graphene superlattices made with chemical functionalization offer the possibility of tuning both the...
We numerically study the thermoelectric and thermal transport in ABA-stacked trilayer graphene in th...
Although it was demonstrated that discrete molecular levels determine the sign and magnitude of the ...
We show that the thermoelectric properties of nanoscale junctions featuring states near the Fermi le...
We numerically study the thermoelectric transport in AB- and AA-stacked bilayer graphene in the pres...
We numerically study the disorder effect on the thermoelectric and thermal transport in bilayer grap...
Graphene, a single atomic layer of graphite, has emerged as one of the most attractive materials in ...
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...
Graphene is a newly discovered material. It has many excellent properties, which make the research o...
© 2017 Dr. Md Sharafat HossainThe field of thermoelectrics has the potential to solve many problems ...
We study the thermoelectric properties of rectangular graphene rings connected symmetrically or asym...
Many efforts have been made to search for materials that maximize the thermoelectric (TE) figure of ...
Although it was demonstrated that discrete molecular levels determine the sign and magnitude of the ...
We study the thermoelectric properties of an electronic localized level coupled to two graphene elec...
Graphene superlattices made with chemical functionalization offer the possibility of tuning both the...
We numerically study the thermoelectric and thermal transport in ABA-stacked trilayer graphene in th...
Although it was demonstrated that discrete molecular levels determine the sign and magnitude of the ...
We show that the thermoelectric properties of nanoscale junctions featuring states near the Fermi le...