Synthesis and thermoelectric properties of high-entropy half-Heusler MFe1-xCoxSb (M = equimolar Ti, Zr, Hf, V, Nb, Ta)

被引:34
|
作者
Chen, Kan [1 ]
Zhang, Ruizhi [1 ]
Bos, Jan-Willem G. [2 ,3 ]
Reece, Michael J. [1 ]
机构
[1] Queen Mary Univ London, Sch Engn & Mat Sci, Mile End Rd, London E1 4NS, England
[2] Heriot Watt Univ, Inst Chem Sci, Sch Engn & Phys Sci, Edinburgh EH14 4AS, Midlothian, Scotland
[3] Heriot Watt Univ, Ctr Adv Energy Storage & Recovery, Sch Engn & Phys Sci, Edinburgh EH14 4AS, Midlothian, Scotland
基金
英国工程与自然科学研究理事会;
关键词
Intermetallics; Mechanical alloying; Sintering; Entropy; Thermoelectric; Heat conduction; CONDUCTIVITY; SCATTERING; ALLOYS;
D O I
10.1016/j.jallcom.2021.162045
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The application of the high-entropy concept has generated many interesting results for both alloys and ceramics. However, there are very few reports on high entropy thermoelectric materials. In this work, a single phase high-entropy half-Heusler compound MFe1-xCoxSb with 6 equimolar elements (Ti, Zr, Hf, V, Nb and Ta) on the M site was successfully synthesized by a simple method of mechanical alloying, and the single phase was maintained after densification by spark plasma sintering. The multi-elements are homogenously distributed in the samples. The samples are stable and there is no phase separation after annealing at 1073 K in argon for 72 h, which could be attributed to their high configurational entropy. Due to the phonon scattering introduced by multi-elements, the lattice thermal conductivity is largely sup-pressed with a lowest value of similar to 1.8-1.5 Wm(-1)K(-1) (300-923 K) for MCoSb. By adjusting the Fe/Co ratio, the samples can show both n-type and p-type semiconductor behavior. Maximum zT values of 0.3 and 0.25 are achieved for n-type MCoSb and p-type MFe0.6Co0.4Sb, respectively. The results suggest that the high-entropy concept is a promising strategy to extend the composition range and tune the thermoelectric properties for half-Heusler materials, which could potentially be applied in other thermoelectric materials. (C) 2021 Elsevier B.V. All rights reserved.
引用
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页数:7
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