Please use this identifier to cite or link to this item: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/9325
Title: Entropy-Stabilized Half-Heuslers (TiHf)1/2(Fe1–xCoNi1+x)1/3Sb with Highly Reduced Lattice Thermal Conductivity
Authors: KUMAR, ANKIT
VISHAK, SIVASUBRAMANIYAN S.
Das, Anustoop
Biswas, Kanishka
GHOSH, PRASENJIT
SINGH, SURJEET
Dept. of Physics
Keywords: Alloys
Lattices
Materials
Thermal conductivity
Thermoelectric materials
2025-FEB-WEEK1
TOC-FEB-2025
2025
Issue Date: Feb-2025
Publisher: American Chemical Society
Citation: Chemistry of Materials
Abstract: High-entropy alloys (HEAs) have gained significant attention recently due to their exceptional physical properties. Among HEAs, entropy-stabilized alloys, where the high configurational entropy drives the structural stability, are of considerable interest in new materials discovery. Here, we combine theoretical and experimental approaches to design very low lattice thermal conductivity (κl) high-entropy materials (TiHf)1/2(Fe1–xCoNi1+x)1/3Sb belonging to the half-Heusler family. We demonstrate that (TiHf)1/2(FeCoNi)1/3Sb is entropy-stabilized, with κl at 300 K suppressed by over 80% with respect to the parent compound TiCoSb that has an unfavorably high thermal conductivity of 18 W·m–1·K–1. Further reduction of κl is achieved by tuning the Fe/Ni ratio. The lowest κl is observed in the material (TiHf)1/2(Fe0.5CoNi1.5)1/3Sb, where it approaches the theoretical minimum value of κmin ≈ 1 W·–1·K–1 at 973 K. Tuning the Fe/Ni ratio simultaneously optimizes the carrier concentration, resulting in significantly enhancing electronic properties. The electrical conductivity increases almost 5-fold, and the power factor increases from 7 to 16 μW·cm–1·K–2 as x increases from 0 to 0.5 at 973 K, making the material (TiHf)1/2(Fe0.5CoNi1.5)1/3Sb achieve a zT of 0.51 at 973 K without further optimization
URI: https://doi.org/10.1021/acs.chemmater.4c02094
http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/9325
ISSN: 0897-4756
1520-5002
Appears in Collections:JOURNAL ARTICLES

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