International audienceWe study the thermoelectric performance of 90 0-bent graphene nanoribbons containing nanopores for optimized design of multiple functional circuits including thermoelectric generators. We show that the thermal conductance of the 90 0-bent ribbons is lower from few times to an order of magnitude compared to that of pristine armchair and zigzag straight ribbons. Consequently, the thermoelectric performance of the bent ribbons is better than its straight ribbon counterparts, in particular at high temperatures above 500 K. More importantly, the introduction of nanopores is demonstrated to strongly enhance their thermoelectric capacity. At 500 K, the figure of merit ZT increases by more than 160% (from 0.39 without pores to...
In view of the experimental breakthrough and unique geometric structure, through using the nonequili...
Thermoelectric junctions are often made of components of different materials characterized by distin...
Thermoelectric junctions are often made of components of different materials characterized by distin...
International audienceWe study the thermoelectric performance of 90 0-bent graphene nanoribbons cont...
International audienceWe study the thermoelectric performance of 90 0-bent graphene nanoribbons cont...
International audienceWe study the thermoelectric performance of 90 0-bent graphene nanoribbons cont...
International audienceWe study the thermoelectric performance of 90 0-bent graphene nanoribbons cont...
International audienceWe study the thermoelectric performance of 90 0-bent graphene nanoribbons cont...
International audienceWe study the thermoelectric performance of 90 0-bent graphene nanoribbons cont...
International audienceWe study the thermoelectric performance of 90 0-bent graphene nanoribbons cont...
Thermoelectric properties of Graphene nano-ribbons (GNRs) with nanopores (NPs) are explored for a ra...
We demonstrate that thermoelectric properties of graphene nanoribbons can be dramatically improved b...
© 2017 Dr. Md Sharafat HossainThe field of thermoelectrics has the potential to solve many problems ...
Nanomaterials provide unique promise to thermoelectric energy conversion owing to their possible pho...
Control of both the regularity of a material ensemble and nanoscale architecture provides unique opp...
In view of the experimental breakthrough and unique geometric structure, through using the nonequili...
Thermoelectric junctions are often made of components of different materials characterized by distin...
Thermoelectric junctions are often made of components of different materials characterized by distin...
International audienceWe study the thermoelectric performance of 90 0-bent graphene nanoribbons cont...
International audienceWe study the thermoelectric performance of 90 0-bent graphene nanoribbons cont...
International audienceWe study the thermoelectric performance of 90 0-bent graphene nanoribbons cont...
International audienceWe study the thermoelectric performance of 90 0-bent graphene nanoribbons cont...
International audienceWe study the thermoelectric performance of 90 0-bent graphene nanoribbons cont...
International audienceWe study the thermoelectric performance of 90 0-bent graphene nanoribbons cont...
International audienceWe study the thermoelectric performance of 90 0-bent graphene nanoribbons cont...
Thermoelectric properties of Graphene nano-ribbons (GNRs) with nanopores (NPs) are explored for a ra...
We demonstrate that thermoelectric properties of graphene nanoribbons can be dramatically improved b...
© 2017 Dr. Md Sharafat HossainThe field of thermoelectrics has the potential to solve many problems ...
Nanomaterials provide unique promise to thermoelectric energy conversion owing to their possible pho...
Control of both the regularity of a material ensemble and nanoscale architecture provides unique opp...
In view of the experimental breakthrough and unique geometric structure, through using the nonequili...
Thermoelectric junctions are often made of components of different materials characterized by distin...
Thermoelectric junctions are often made of components of different materials characterized by distin...