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首页> 外文期刊>Journal of Materials Science >Ab initio investigations of the structural, electronic, and thermoelectric properties of Fe2NbAl-based alloys
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Ab initio investigations of the structural, electronic, and thermoelectric properties of Fe2NbAl-based alloys

机译:从头开始研究Fe2NbAl基合金的结构,电子和热电性能

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Ab initio calculations are performed to investigate the electronic structure of Fe2NbAl full-Heusler alloy as well as the non-stoichiometric Fe1.75X0.25NbAl and Fe2Y0.25Nb0.75Al (X, Y = Cr, Mn, Co) alloys. The thermoelectric properties of these alloys are computed using Boltzmann transport formalism. Fe2NbAl alloy is found to exhibit a semiconductor structure with an indirect band gap of 0.3 eV along the I"-X high symmetry line. However, Fe1.75X0.25NbAl (X = Cr, Mn, Co) and Fe2Y0.25Nb0.75Al (Y = Cr, Co) are found to be metallic, whereas Fe2Mn0.25Nb0.75Al is semiconductor with a band gap of 0.2 eV at I"-point. The p-type of Fe2NbAl alloy shows a maximum Seebeck coefficient of 220 mu V/K at 800 K, whereas the n-type shows a peak of 280 mu V/K at 150 K. The maximum power factor reaches 12 and 51 x 10(-3) W/mK(2) at hole concentrations of similar to 1.60 x 10(21) and 1.45 x 10(-3) cm(-3) for the p-type material and about 18 and 42 x 10(-3) W/mK(2) at electron concentrations of similar to 1.65 x 10(21) and 1.6 x 10(-3) cm(-3) for the n-type at 300 and 800 K, respectively. Alloying Fe2NbAl with Cr, Mn, and Co at Fe and Nb sites leads to an appreciable increase in the PF values of the non-stoichiometric alloys, which indicates higher efficiencies and potential thermoelectric applications.
机译:进行从头算计算以研究Fe2NbAl全赫斯勒合金以及非化学计量的Fe1.75X0.25NbAl和Fe2Y0.25Nb0.75Al(X,Y = Cr,Mn,Co)合金的电子结构。这些合金的热电性能是使用玻尔兹曼输运形式来计算的。发现Fe2NbAl合金沿I“ -X高对称线具有间接带隙为0.3 eV的半导体结构。但是,Fe1.75X0.25NbAl(X = Cr,Mn,Co)和Fe2Y0.25Nb0.75Al(发现Y = Cr,Co)是金属的,而Fe 2 Mn 0.25 Nb 0.75 Al是在I”点具有0.2eV的带隙的半导体。 Fe型NbAl合金的p型在800 K时的最大塞贝克系数为220μV / K,而n型在150 K时的峰值为280 mu V / K。最大功率因数达到12和51 x 10 (-3)W / mK(2),对于p型材料,其孔浓度类似于1.60 x 10(21)和1.45 x 10(-3)cm(-3),并且约为18和42 x 10(- 3)W / mK(2)在分别为300和800 K的n型电子浓度分别接近1.65 x 10(21)和1.6 x 10(-3)cm(-3)的情况下。在Fe和Nb处将Fe2NbAl与Cr,Mn和Co合金化会导致非化学计量合金的PF值显着增加,这表明更高的效率和潜在的热电应用。

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