ABSTRACT: Graphene superlattices made with chemical func-tionalization offer the possibility of tuning both the thermal and electronic properties via nanopatterning of the graphene surface. Using classical and quantum mechanical calculations, we predict that suitable chemical functionalization of graphene can introduce peaks in the density of states at the band edge that result in a large enhancement in the Seebeck coefficient, leading to an increase in the room-temperature power factor of a factor of 2 compared to pristine graphene, despite the degraded electrical conductivity. Furthermore, the presence of patterns on graphene reduces the thermal conductivity, which when taken together leads to an increase in the figure of merit for functi...
The project studied the thermoelectric nanocrystals for energy conversion applications. We investiga...
The project studied the thermoelectric nanocrystals for energy conversion applications. We investiga...
Control of both the regularity of a material ensemble and nanoscale architecture provides unique opp...
Graphene superlattices made with chemical functionalization offer the possibility of tuning both the...
Graphene superlattices made with chemical functionalization offer the possibility of tuning both the...
Graphene, as a typical two-dimensional nanometer material, has shown its unique application potentia...
© 2017 Dr. Md Sharafat HossainThe field of thermoelectrics has the potential to solve many problems ...
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 demonstrate that thermoelectric properties of graphene nanoribbons can be dramatically improved b...
The use of an asymmetric broadening in the transport distribution, a characteristic of resonant stru...
The thermoelectric properties of zigzag graphene nanoribbons (ZGNRs) are sensitive to chemical modif...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Thermoelectric materials can convert thermal energy and electrical energy into each other, which hav...
Thermoelectric materials, which can change the waste heat into the usable electricity, are intereste...
The project studied the thermoelectric nanocrystals for energy conversion applications. We investiga...
The project studied the thermoelectric nanocrystals for energy conversion applications. We investiga...
Control of both the regularity of a material ensemble and nanoscale architecture provides unique opp...
Graphene superlattices made with chemical functionalization offer the possibility of tuning both the...
Graphene superlattices made with chemical functionalization offer the possibility of tuning both the...
Graphene, as a typical two-dimensional nanometer material, has shown its unique application potentia...
© 2017 Dr. Md Sharafat HossainThe field of thermoelectrics has the potential to solve many problems ...
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 demonstrate that thermoelectric properties of graphene nanoribbons can be dramatically improved b...
The use of an asymmetric broadening in the transport distribution, a characteristic of resonant stru...
The thermoelectric properties of zigzag graphene nanoribbons (ZGNRs) are sensitive to chemical modif...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Thermoelectric materials can convert thermal energy and electrical energy into each other, which hav...
Thermoelectric materials, which can change the waste heat into the usable electricity, are intereste...
The project studied the thermoelectric nanocrystals for energy conversion applications. We investiga...
The project studied the thermoelectric nanocrystals for energy conversion applications. We investiga...
Control of both the regularity of a material ensemble and nanoscale architecture provides unique opp...