AbstractWe have investigated thermoelectric properties of oxygen-included iron-silicide thin films prepared by facing target sputtering for applying them to thermoelectric devices. The highest Seebeck coefficient of 17.84 μV/K are obtained. It is the first attempt to investigate thermoelectric properties of oxygen-included iron-silicide films
Abstract(220)- and (422)-oriented Co-doped n-type β-FeSi2 films were formed onto p-type Si (100) by ...
We carried out trial manufacture research of the high-efficient thermoelectric power generation elem...
Iron Silicide (FeSi) films deposited on silicon substrates with the native SiO2 layer have shown a M...
AbstractWe have investigated thermoelectric properties of oxygen-included iron-silicide thin films p...
Abweichender Titel nach Übersetzung der Verfasserin/des VerfassersIn this work, the thermoelectric p...
AbstractThe effects of annealing temperature and duration on the formation of iron silicides prepare...
Thermoelectric devices, which convert heat into electricity, are regarded as an environmentally frie...
Thermoelectric (TE) materials are increasingly promising for power generation in medium to high-temp...
Metal silicide-based thermocouples were fabricated by screen printing thick films of the powder comp...
Thermoelectric device is a transformative technology for renewable energy generation. It is designed...
L'incertitude de l'énergie mondiale avec l'augmentation constante de la demande d'énergie déclenche ...
Majority of the authors report elaboration of iron oxide thin films by reactive magnetron sputtering...
The electrical and structural properties of cosputtered Fe-Si films are investigated in the composit...
AbstractIron films were deposited onto the Si (100) substrates by DC-magnetron sputtering and subseq...
Thermoelectric generators (TEGs) convert heat to electrical energy by means of the Seebeck effect. T...
Abstract(220)- and (422)-oriented Co-doped n-type β-FeSi2 films were formed onto p-type Si (100) by ...
We carried out trial manufacture research of the high-efficient thermoelectric power generation elem...
Iron Silicide (FeSi) films deposited on silicon substrates with the native SiO2 layer have shown a M...
AbstractWe have investigated thermoelectric properties of oxygen-included iron-silicide thin films p...
Abweichender Titel nach Übersetzung der Verfasserin/des VerfassersIn this work, the thermoelectric p...
AbstractThe effects of annealing temperature and duration on the formation of iron silicides prepare...
Thermoelectric devices, which convert heat into electricity, are regarded as an environmentally frie...
Thermoelectric (TE) materials are increasingly promising for power generation in medium to high-temp...
Metal silicide-based thermocouples were fabricated by screen printing thick films of the powder comp...
Thermoelectric device is a transformative technology for renewable energy generation. It is designed...
L'incertitude de l'énergie mondiale avec l'augmentation constante de la demande d'énergie déclenche ...
Majority of the authors report elaboration of iron oxide thin films by reactive magnetron sputtering...
The electrical and structural properties of cosputtered Fe-Si films are investigated in the composit...
AbstractIron films were deposited onto the Si (100) substrates by DC-magnetron sputtering and subseq...
Thermoelectric generators (TEGs) convert heat to electrical energy by means of the Seebeck effect. T...
Abstract(220)- and (422)-oriented Co-doped n-type β-FeSi2 films were formed onto p-type Si (100) by ...
We carried out trial manufacture research of the high-efficient thermoelectric power generation elem...
Iron Silicide (FeSi) films deposited on silicon substrates with the native SiO2 layer have shown a M...