Pressure-Induced Enhancement of Thermoelectric Figure of Merit and Structural Phase Transition in TiNiSn

Half-Heusler thermoelectric materials are potential candidates for high thermoelectric efficiency. We report high-pressure thermoelectric and structural property measurements, density functional theory calculations on the half-Heusler material TiNiSn, and an increase of 15% in the relative dimension...

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Veröffentlicht in:The journal of physical chemistry letters 2021-01, Vol.12 (3), p.1046-1051
Hauptverfasser: Baker, Jason L, Park, Changyong, Kenney-Benson, Curtis, Sharma, Vineet Kumar, Kanchana, V, Vaitheeswaran, G, Pickard, Chris J, Cornelius, Andrew, Velisavljevic, Nenad, Kumar, Ravhi S
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Sprache:eng
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Zusammenfassung:Half-Heusler thermoelectric materials are potential candidates for high thermoelectric efficiency. We report high-pressure thermoelectric and structural property measurements, density functional theory calculations on the half-Heusler material TiNiSn, and an increase of 15% in the relative dimensionless figure of merit, ZT, around 3 GPa. Thermal and electrical properties were measured utilizing a specialized sample cell assembly designed for the Paris–Edinburgh large-volume press to a maximum pressure of 3.5 GPa. High-pressure structural measurements performed up to 50 GPa in a diamond-anvil cell indicated the emergence of a new high-pressure phase around 20 GPa. A first-principles structure search performed using an ab initio random structure search approach identified the high-pressure phase as an orthorhombic type, in good agreement with the experimental results.
ISSN:1948-7185
1948-7185
DOI:10.1021/acs.jpclett.0c03609