We report the electronic, optical, and thermoelectric properties of full-Heusler alloy Fe2VAl with Fe antisite doping (Fe2+xV1−xAl) as obtained from the first-principles Tran-Blaha modified Becke-Johnson potential. The results are discussed in relation to the available experimental data and show good agreements for the band gap, magnetic moment, and optical spectra. Exploring our transport data for thermoelectric applicability suggest that Fe2+xV1−xAl is a good candidate with a high figure of merit (ZT) 0.75(0.65) for x = 0.25(0.50) at room temperature
Fe2YZ full-Heusler compounds were recently predicted to exhibit very large thermoelectric power fact...
The effect of high pressure on the structural, electronic, mechanical, thermal and transport propert...
We explore the electronic, transport and thermoelectric properties of Fe1+ySexTe1−x compounds to cla...
Fe2TiSn is a full-Heusler alloy with 24 valence electrons per formula unit. Its electronic properti...
International audienceThe microstructure and the thermoelectric properties were systematically deter...
Herein, we have investigated the structural, mechanical, magneto-electronic and thermoelectric prope...
Using first-principles calculations, we show that Fe2VAl is an indirect band-gap semiconductor. Our ...
The high-resolution soft x-ray photoelectron study of Heusler(L21)-type (Fe2 3V1 3)100-yAly (y=23.8-...
Using a combination of first-principles calculations based on density functional theory and Boltzman...
First-principles calculations of the stability, electronic, and magnetic properties of full-Heusler ...
An anomalous negative temperature dependence of electrical resistivity has been observed in (Fe1-xVx...
We report measurements of the magnetic, transport, and thermal properties of the Heusler-type compou...
International audienceA very large thermoelectric figure of merit ZT = 6 at 380 K has recently been ...
We report on the temperature dependence of magnetization, electrical resistivity, and specific heat ...
We report on the thermoelectric properties of the Heusler-type Fe2 VAl1-x Gex alloys with compositi...
Fe2YZ full-Heusler compounds were recently predicted to exhibit very large thermoelectric power fact...
The effect of high pressure on the structural, electronic, mechanical, thermal and transport propert...
We explore the electronic, transport and thermoelectric properties of Fe1+ySexTe1−x compounds to cla...
Fe2TiSn is a full-Heusler alloy with 24 valence electrons per formula unit. Its electronic properti...
International audienceThe microstructure and the thermoelectric properties were systematically deter...
Herein, we have investigated the structural, mechanical, magneto-electronic and thermoelectric prope...
Using first-principles calculations, we show that Fe2VAl is an indirect band-gap semiconductor. Our ...
The high-resolution soft x-ray photoelectron study of Heusler(L21)-type (Fe2 3V1 3)100-yAly (y=23.8-...
Using a combination of first-principles calculations based on density functional theory and Boltzman...
First-principles calculations of the stability, electronic, and magnetic properties of full-Heusler ...
An anomalous negative temperature dependence of electrical resistivity has been observed in (Fe1-xVx...
We report measurements of the magnetic, transport, and thermal properties of the Heusler-type compou...
International audienceA very large thermoelectric figure of merit ZT = 6 at 380 K has recently been ...
We report on the temperature dependence of magnetization, electrical resistivity, and specific heat ...
We report on the thermoelectric properties of the Heusler-type Fe2 VAl1-x Gex alloys with compositi...
Fe2YZ full-Heusler compounds were recently predicted to exhibit very large thermoelectric power fact...
The effect of high pressure on the structural, electronic, mechanical, thermal and transport propert...
We explore the electronic, transport and thermoelectric properties of Fe1+ySexTe1−x compounds to cla...