Enhanced thermoelectric performance in p-type ZrCoSb based half-Heusler alloys employing nanostructuring and compositional modulation

被引:56
|
作者
Chauhan, Nagendra S. [1 ,2 ]
Bathula, Sivaiah [1 ,2 ]
Vishwakarma, Avinash [1 ,2 ]
Bhardwaj, Ruchi [1 ,2 ]
Johari, Kishor Kumar [1 ,2 ]
Gahtori, Bhasker [1 ,2 ]
Dhar, Ajay [1 ,2 ]
机构
[1] CSIR Natl Phys Lab, Acad Sci & Innovat Res AcSIR, New Delhi 110012, India
[2] CSIR Natl Phys Lab, Div Adv Mat & Devices Metrol, Dr KS Krishnan Marg, New Delhi 110012, India
关键词
Half Heuslers; Iso-electronic; Waste heat recovery; Mid-temperature; Efficiency; Compositional modulation; LATTICE THERMAL-CONDUCTIVITY; WASTE HEAT; POWER; FIGURE; ENERGY; MERIT; SCATTERING; SYSTEM;
D O I
10.1016/j.jmat.2018.11.003
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
ZrCoSb based half-Heusler (HH) alloys have been widely studied as a p-type thermoelectric (TE) material for power generation applications in the mid-temperature regime. However, their intrinsically high thermal conductivity has been found to be detrimental for the improvement in their thermoelectric figure-of-merit (ZT), which presently is far below unity. In the current work, a state-of-the-art ZT similar to 1.1 at 873 K was realized in an optimized composition of nanostructured Zr1-xHfxCoSb0.9Sn0.1 HH alloys by employing compositional modulation i.e. grain-by-grain compositional variations, which leads to a substantial increase in its power factor coupled with a concurrent decrease in its thermal conductivity. Significant reduction in the phonon mean-free-path is observed on Hf substitution, which is comparable to the average crystallite size (similar to 25 nm), thus leading to a very low thermal conductivity of similar to 2.2 W m(-1) K-1 at 873 K, which is amongst the lowest reported in HH alloys. The TE device characteristics, estimated using cumulative temperature dependence model for quantitative evaluation of TE performance, yielded an output power density of similar to 10 W cm(-2) with a leg efficiency of similar to 10% in the optimized composition of nanostructured Zr1-xHfxCoSb0.9Sn0.1 HH alloys, which is comparable to the reported efficiencies of other state-of-the-art TE materials. (c) 2018 The Chinese Ceramic Society. Production and hosting by Elsevier B.V.
引用
收藏
页码:94 / 102
页数:9
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