We report on the thermoelectric properties of the Heusler-type Fe2 VAl1-x Gex alloys with compositions 0?x?0.20. While Fe2 VAl (x=0) exhibits a semiconductorlike behavior in electrical resistivity, a slight substitution of Ge for Al causes a significant decrease in the low-temperature resistivity and a large enhancement in the Seebeck coefficient, reaching -130 μV K for x=0.05 at around room temperature. Comparison with the Fe2 VAl1-x Six system demonstrates that the compositional variation of the Seebeck coefficient falls on a universal curve irrespective of the doping elements (Ge and Si), both of which are isoelectronic elements. The net effect of doping is most likely to cause a rigid-bandlike shift of the Fermi level from the central ...
A systematic study based on state-of-the-art first-principles calculations has been carried out to d...
The current climate makes the need for sustainable energy production a priority, leading to keen ...
We report the electronic, optical, and thermoelectric properties of full-Heusler...
International audienceThe microstructure and the thermoelectric properties were systematically deter...
We report on the temperature dependence of magnetization, electrical resistivity, and specific heat ...
Using the thermoelectric technology for large scale applications requires thermoelectric (TE) materi...
An anomalous negative temperature dependence of electrical resistivity has been observed in (Fe1-xVx...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
GeTe-based materials are emerging as viable alternatives to toxic PbTe-based thermoelectric material...
The effect of Ti substitution by Sc on the thermoelectric properties of the Heusler compounds NiTi0....
The high-resolution soft x-ray photoelectron study of Heusler(L21)-type (Fe2 3V1 3)100-yAly (y=23.8-...
peer reviewedAccording to theoretical predictions [Phys. Rev. Lett. 114, 136601 (2015)], Sb substitu...
Some transition-metal dichalcogenides have been actively studied recently owing to their potential f...
Fe2TiSn is a full-Heusler alloy with 24 valence electrons per formula unit. Its electronic properti...
A systematic study based on state-of-the-art first-principles calculations has been carried out to d...
The current climate makes the need for sustainable energy production a priority, leading to keen ...
We report the electronic, optical, and thermoelectric properties of full-Heusler...
International audienceThe microstructure and the thermoelectric properties were systematically deter...
We report on the temperature dependence of magnetization, electrical resistivity, and specific heat ...
Using the thermoelectric technology for large scale applications requires thermoelectric (TE) materi...
An anomalous negative temperature dependence of electrical resistivity has been observed in (Fe1-xVx...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
GeTe-based materials are emerging as viable alternatives to toxic PbTe-based thermoelectric material...
The effect of Ti substitution by Sc on the thermoelectric properties of the Heusler compounds NiTi0....
The high-resolution soft x-ray photoelectron study of Heusler(L21)-type (Fe2 3V1 3)100-yAly (y=23.8-...
peer reviewedAccording to theoretical predictions [Phys. Rev. Lett. 114, 136601 (2015)], Sb substitu...
Some transition-metal dichalcogenides have been actively studied recently owing to their potential f...
Fe2TiSn is a full-Heusler alloy with 24 valence electrons per formula unit. Its electronic properti...
A systematic study based on state-of-the-art first-principles calculations has been carried out to d...
The current climate makes the need for sustainable energy production a priority, leading to keen ...
We report the electronic, optical, and thermoelectric properties of full-Heusler...