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Improving the Thermoelectric Properties of the Half-Heusler Compound VCoSb by Vanadium Vacancy.


ABSTRACT: The effects of V vacancy on the thermoelectric performance of the half-Heusler compound VCoSb have been investigated in this study. A certain amount of CoSb secondary phase is generated in the VCoSb matrix when the content of V vacancy is more than 0.1 at%. According to the results, a ZT value of 0.6, together with a power factor of 29 ?W cm-1 K-2 at 873 K, were achieved for the nonstoichiometric sample V0.9CoSb. This proved that moderate V vacancy could improve the thermoelectric (TE) properties of VCoSb. The noticeable improvements are mainly owing to the incremental Seebeck coefficient, which may benefit from the optimized carrier concentration. However, too much V vacancy will result in more CoSb impurity and deteriorate the TE performances of VCoSb owing to the increased thermal conductivity.

SUBMITTER: Huang L 

PROVIDER: S-EPMC6566434 | biostudies-literature | 2019 May

REPOSITORIES: biostudies-literature

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Improving the Thermoelectric Properties of the Half-Heusler Compound VCoSb by Vanadium Vacancy.

Huang Lihong L   Wang Junchen J   Mo Xiaobo X   Lei Xiaobo X   Ma Sude S   Wang Chao C   Zhang Qinyong Q  

Materials (Basel, Switzerland) 20190520 10


The effects of V vacancy on the thermoelectric performance of the half-Heusler compound VCoSb have been investigated in this study. A certain amount of CoSb secondary phase is generated in the VCoSb matrix when the content of V vacancy is more than 0.1 at%. According to the results, a <i>ZT</i> value of 0.6, together with a power factor of 29 μW cm<sup>-1</sup> K<sup>-2</sup> at 873 K, were achieved for the nonstoichiometric sample V<sub>0.9</sub>CoSb. This proved that moderate V vacancy could i  ...[more]

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