First-principles calculations of structural and bonding properties of Li-doped tetrahedrite thermoelectrics

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Hauptverfasser: Kapera, Krzysztof, Kolezynski, Andrzej
Format: Preprint
Veröffentlicht: 2024
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author Kapera, Krzysztof
Kolezynski, Andrzej
author_facet Kapera, Krzysztof
Kolezynski, Andrzej
contents Tetrahedrite (copper antimony sulfosalt) is promising p-type themoeletric material due to very low intrinsic thermal conductivity and moderately-high power factor, with one of the limitations being lack of n-type variant to create thermoelectric generator. In this paper, DFT calculations have been carried out to study tetrahedrite doped with Li into structural voids, LixCu12Sb4S13 (0 <= x <= 3). Enthalpies of formation shows that introduction of Li into both 6b and 24g sites is energetically favorable. Dopants in those positions differently affect rattling Cu(12e) behaviour, as well as vary in magnitude of induced local disorder. Topological analysis of charge density classifies tetrahedrite as closed-shell, ionic system of interactions with some degree of covalency. Addition of Li increases bond strain and decreases structure stability. Electronic band structure shows that for x>2.0, material becomes n-type, however results are not precisely conclusive on whether structure will be synthesizable, which should be determined experimentally.
format Preprint
id arxiv_https___arxiv_org_abs_2408_00404
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle First-principles calculations of structural and bonding properties of Li-doped tetrahedrite thermoelectrics
Kapera, Krzysztof
Kolezynski, Andrzej
Materials Science
Tetrahedrite (copper antimony sulfosalt) is promising p-type themoeletric material due to very low intrinsic thermal conductivity and moderately-high power factor, with one of the limitations being lack of n-type variant to create thermoelectric generator. In this paper, DFT calculations have been carried out to study tetrahedrite doped with Li into structural voids, LixCu12Sb4S13 (0 <= x <= 3). Enthalpies of formation shows that introduction of Li into both 6b and 24g sites is energetically favorable. Dopants in those positions differently affect rattling Cu(12e) behaviour, as well as vary in magnitude of induced local disorder. Topological analysis of charge density classifies tetrahedrite as closed-shell, ionic system of interactions with some degree of covalency. Addition of Li increases bond strain and decreases structure stability. Electronic band structure shows that for x>2.0, material becomes n-type, however results are not precisely conclusive on whether structure will be synthesizable, which should be determined experimentally.
title First-principles calculations of structural and bonding properties of Li-doped tetrahedrite thermoelectrics
topic Materials Science
url https://arxiv.org/abs/2408.00404