Theoretical Maximum Thermoelectric Performance of p‐Type Hf‐ and Zr‐Doped NbFeSb Half‐Heusler Compounds

Author:

Park Hyunjin1,Kim Sang‐il1,Kim Jeong‐Yeon1,Shin Weon Ho2,Aydemir Umut34ORCID,Kim Hyun‐Sik1

Affiliation:

1. Department of Materials Science and Engineering University of Seoul 163 Seoulsiripdae‐ro, Dongdaemun‐gu Seoul 02504 South Korea

2. Department of Electronic Materials Engineering Kwangwoon University 20 Kwangwoon‐ro, Nowon‐gu Seoul 01897 South Korea

3. Department of Chemistry Koç University Rumelifeneri Yolu, Sariyer Istanbul 34450 Türkiye

4. Koç University Boron and Advanced Materials Applications and Research Center (KUBAM) Sariyer Istanbul 34450 Türkiye

Abstract

AbstractHalf‐Heusler compounds are promising materials for thermoelectric applications due to their high zT at elevated temperatures. However, their intrinsic high thermal conductivity limits their efficiency. Doping with Hf or Zr can improve the zT of these materials. Recently, a high zT of 1.5 at 1200 K achieved in p‐type Nb1‐xHfxFeSb has attracted much attention. While the effect of doping Hf in thermal conductivity is studied thoroughly, the effect of Hf doping on band parameters is not fully evaluated. This study investigates the effect of Hf and Zr doping on the electronic band parameters and thermoelectric properties of NbFeSb using the Single Parabolic Band model. The results show that Hf doping increases the weighted mobility of the samples, while Zr doping has no significant effect. Hf doping with x = 0.14 is predicted to improve the zT of NbFeSb by 35% at 300 K (0.19 → 0.26). These results show the intricate effects of Hf and Zr doping on the electronic and thermal properties of NbFeSb.

Funder

Ministry of Science and ICT, South Korea

Ministry of Trade, Industry and Energy

Publisher

Wiley

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