On electrical transport and thermoelectric performance in half-Heusler phase ScNiSb

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Auteurs principaux: Ciesielski, K. M., Kaczorowski, D.
Format: Preprint
Publié: 2024
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author Ciesielski, K. M.
Kaczorowski, D.
author_facet Ciesielski, K. M.
Kaczorowski, D.
contents Half-Heusler phases are among the most extensively studied thermoelectic materials. Bipolar thermal conductivity analysis performed for their sub-group based on rare-earth (R) metals, RNiSb, indicated on high mobility ratio in favor of electrons. The suggestion found its experimental verification and led to significant improvement of thermoelectric properties in $n$-type doped series ScNiSb$_{1-x}$Te$_x$. Recently, an alternative interpretation of transport properties in ScNiSb was proposed, where multi-parameter fit lead to mobility ratio in favor of holes. In this work we discuss the details of electrical properties and thermoelectric performance of ScNiSb in context of structural disorder. The article considers also relevant assumptions regarding band degeneracy and scattering mechanisms for effective mass modeling in ScNiSb. Lastly, technical difficulties of the model proposed by the others are addressed. We believe, that the provided insight will be useful for understating electrical transport in half-Heusler compounds, which can contribute to further improvement of their thermoelectric performance.
format Preprint
id arxiv_https___arxiv_org_abs_2408_03639
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle On electrical transport and thermoelectric performance in half-Heusler phase ScNiSb
Ciesielski, K. M.
Kaczorowski, D.
Materials Science
Half-Heusler phases are among the most extensively studied thermoelectic materials. Bipolar thermal conductivity analysis performed for their sub-group based on rare-earth (R) metals, RNiSb, indicated on high mobility ratio in favor of electrons. The suggestion found its experimental verification and led to significant improvement of thermoelectric properties in $n$-type doped series ScNiSb$_{1-x}$Te$_x$. Recently, an alternative interpretation of transport properties in ScNiSb was proposed, where multi-parameter fit lead to mobility ratio in favor of holes. In this work we discuss the details of electrical properties and thermoelectric performance of ScNiSb in context of structural disorder. The article considers also relevant assumptions regarding band degeneracy and scattering mechanisms for effective mass modeling in ScNiSb. Lastly, technical difficulties of the model proposed by the others are addressed. We believe, that the provided insight will be useful for understating electrical transport in half-Heusler compounds, which can contribute to further improvement of their thermoelectric performance.
title On electrical transport and thermoelectric performance in half-Heusler phase ScNiSb
topic Materials Science
url https://arxiv.org/abs/2408.03639