Decoupling the electronic thermal and electrical conductivities is one of the limitations hindering a breakthrough in thermoelectric efficiency. After a conformal surface coating of bismuth telluride nanowires (Bi2Te3 NWs) by porphyrins, the thermal conductivity increases from 0.8 to 1.0 Wm-1K-1 at 300 K without any obvious change in electrical conductivity. Density Functional Theory (DFT) calculations assisted by Boltzmann Transport Equation (BTE) simulations of electronic transport properties indicate that the electronic thermal transport is enhanced by the depletion of surface charge carriers, which results in transition from metallic to semiconducting behavior. Thus, the adsorption of porphyrin onto the Bi2Te3 NWs layer suppresses the s...
Promising research fields associated to solid state physics, such as thermoelectrics and spintronics,...
As one promising low-temperature thermoelectric material, Bi2Te3 suffers from high carrier concentra...
Comunicación presentada en la 34th Annual International Conference on Thermoelectrics (ICT) y en la ...
Decoupling the electronic thermal and electrical conductivities is one of the limitations hindering ...
Using molecular dynamics simulations, we investigate the thermal conductivity and local heat flux di...
4 páginas, 6 figuras.-- Este documento aparece en la "Twenty-first International Conference on Therm...
Thermoelectric materials regain attention due to its capability as a solution of the environmental c...
There is currently substantial effort being invested into creating efficient thermoelectric (TE) nan...
Thermoelectric materials with high electrical conductivity and low thermal conductivity (e.g., Bi2Te...
textThis dissertation presents thermal and thermoelectric transport measurements of onedimensional ...
Using molecular dynamics simulations, we have predicted the thermal conductivity of Bi2Te3 nanowires...
Atomic level thermal transport in layered materials, namely, Bi 2Te3 and graphene is investigated us...
Bismuth chalcogenides are promising materials for thermoelectric (TE) application due to their high ...
International audienceEvidence for an excellent compromise between structural stability and low ther...
Bi2Te3 is well-known for its utility in thermoelectrical applications and more recently as topologic...
Promising research fields associated to solid state physics, such as thermoelectrics and spintronics,...
As one promising low-temperature thermoelectric material, Bi2Te3 suffers from high carrier concentra...
Comunicación presentada en la 34th Annual International Conference on Thermoelectrics (ICT) y en la ...
Decoupling the electronic thermal and electrical conductivities is one of the limitations hindering ...
Using molecular dynamics simulations, we investigate the thermal conductivity and local heat flux di...
4 páginas, 6 figuras.-- Este documento aparece en la "Twenty-first International Conference on Therm...
Thermoelectric materials regain attention due to its capability as a solution of the environmental c...
There is currently substantial effort being invested into creating efficient thermoelectric (TE) nan...
Thermoelectric materials with high electrical conductivity and low thermal conductivity (e.g., Bi2Te...
textThis dissertation presents thermal and thermoelectric transport measurements of onedimensional ...
Using molecular dynamics simulations, we have predicted the thermal conductivity of Bi2Te3 nanowires...
Atomic level thermal transport in layered materials, namely, Bi 2Te3 and graphene is investigated us...
Bismuth chalcogenides are promising materials for thermoelectric (TE) application due to their high ...
International audienceEvidence for an excellent compromise between structural stability and low ther...
Bi2Te3 is well-known for its utility in thermoelectrical applications and more recently as topologic...
Promising research fields associated to solid state physics, such as thermoelectrics and spintronics,...
As one promising low-temperature thermoelectric material, Bi2Te3 suffers from high carrier concentra...
Comunicación presentada en la 34th Annual International Conference on Thermoelectrics (ICT) y en la ...