The thermoelectric power-factor of two types of rutile-phased nanostructured-TiO2 thin films doped with Ag was investigated at room temperature, by measuring their Seebeck coefficient and electrical conductivity. The thin films, consisting of a nanorod structure (single layer) and nanorod and nanoflower structure (bilayer) of TiO2, with the addition of different wt.% of AgNO3 were synthesized on an F:SnO2-coated glass substrate. The evaluated thermoelectric power-factor was observed to increase with an increasing wt.% of AgNO3 for both structures, with the bilayer structure increasing three times more than the undoped bilayer-structure, with a value of 148 μWm–1K–2 at 0.15 wt.%. This enhancement was due to the increase in electrical conduct...
Nanomaterials can be game-changers in the arena of sustainable energy production because they may en...
Herein, enhancements in thermoelectric (TE) performance, both the power factor (PF) and thermal stab...
Thermoelectric devices are capable of converting a temperature differential into usable electrical e...
Rutile-phased TiO2 thin films consist of single layer of nanorod structure and bilayer of nanorod an...
Optimizing all three thermoelectric properties (Seebeck coefficient, electrical conductivity, and th...
S. Ismat ShahTitanium dioxide has shown promise as the basis for a thermoelectric material as it is ...
AbstractTin oxide thin films doped with iron or copper were deposited on glass and porous alumina su...
International audienceThermoelectric properties of undoped and doped (Ti0.75Sn0.25)O2 were investiga...
Nb-doped TiO2-based nanostructures were novelly prepared by an economical and environmentally frie...
This work reports the production and characterization of optically transparent Nb-doped TiO2 thin fi...
Tin oxide thin films doped with iron or copper were deposited on glass and porous alumina substrates...
SSCI-VIDE+CDFA+SMR:AVC:SDAInternational audienceHigh-efficiency thermoelectric (TE) materials are im...
The present study discusses the effect of iron doping in TiO2 thin films deposited by rf sputtering....
Ag-doped nanocrystalline structures of TiO2 in the form of colloidal particles are synthesized by us...
International audienceA drastic improvement in the power factor of Al-doped ZnO (AZO) thin film was ...
Nanomaterials can be game-changers in the arena of sustainable energy production because they may en...
Herein, enhancements in thermoelectric (TE) performance, both the power factor (PF) and thermal stab...
Thermoelectric devices are capable of converting a temperature differential into usable electrical e...
Rutile-phased TiO2 thin films consist of single layer of nanorod structure and bilayer of nanorod an...
Optimizing all three thermoelectric properties (Seebeck coefficient, electrical conductivity, and th...
S. Ismat ShahTitanium dioxide has shown promise as the basis for a thermoelectric material as it is ...
AbstractTin oxide thin films doped with iron or copper were deposited on glass and porous alumina su...
International audienceThermoelectric properties of undoped and doped (Ti0.75Sn0.25)O2 were investiga...
Nb-doped TiO2-based nanostructures were novelly prepared by an economical and environmentally frie...
This work reports the production and characterization of optically transparent Nb-doped TiO2 thin fi...
Tin oxide thin films doped with iron or copper were deposited on glass and porous alumina substrates...
SSCI-VIDE+CDFA+SMR:AVC:SDAInternational audienceHigh-efficiency thermoelectric (TE) materials are im...
The present study discusses the effect of iron doping in TiO2 thin films deposited by rf sputtering....
Ag-doped nanocrystalline structures of TiO2 in the form of colloidal particles are synthesized by us...
International audienceA drastic improvement in the power factor of Al-doped ZnO (AZO) thin film was ...
Nanomaterials can be game-changers in the arena of sustainable energy production because they may en...
Herein, enhancements in thermoelectric (TE) performance, both the power factor (PF) and thermal stab...
Thermoelectric devices are capable of converting a temperature differential into usable electrical e...