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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Thermal and transport properties of the Heusler-type Fe_2VAl_(1-x)Ge_x (0 ≤ x ≤ 0.20) alloys: Effect of doping on lattice thermal conductivity, electrical resistivity, and Seebeck coefficient
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Thermal and transport properties of the Heusler-type Fe_2VAl_(1-x)Ge_x (0 ≤ x ≤ 0.20) alloys: Effect of doping on lattice thermal conductivity, electrical resistivity, and Seebeck coefficient

机译:Heusler型Fe_2VAl_(1-x)Ge_x(0≤x≤0.20)合金的热和输运性质:掺杂对晶格导热率,电阻率和塞贝克系数的影响

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摘要

We report on the thermoelectric properties of the Heusler-type Fe_2VAl_(1-x)Ge_x alloys with compositions 0 ≤ x ≤ 0.20. While Fe_2VAl (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 Fe_2VAl_(1-x)Si_x 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 region in the pseudogap. In spite of a similar decrease in the electrical resistivity with composition of Ge and Si, the thermal conductivity decreases more rapidly for the Ge substitution. It is concluded that doping of heavier atoms such as Ge reduces more effectively the lattice thermal conductivity while retaining the low electrical resistivity as well as the large Seebeck coefficient.
机译:我们报告了组成为0≤x≤0.20的Heusler型Fe_2VAl_(1-x)Ge_x合金的热电性能。 Fe_2VAl(x = 0)在电阻率上表现出类似半导体的行为,Ge替代Al会导致低温电阻率显着降低,塞贝克系数大幅提高,x == -130μV/ K在室温附近为0.05。与Fe_2VAl_(1-x)Si_x系统的比较表明,塞贝克系数的组成变化均落在通用曲线上,而与这两个都是等电子元素的掺杂元素(Ge和Si)无关。掺杂的净效应最有可能导致费米能级从伪间隙的中心区域发生刚性带状偏移。尽管随着Ge和Si的组成电阻率也有类似的下降,但Ge替代的热导率下降得更快。结论是,掺杂较重的原子(例如Ge)可以更有效地降低晶格热导率,同时保持较低的电阻率以及较大的塞贝克系数。

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