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Lone-Pair-Like Interaction and Bonding Inhomogeneity Induce Ultralow Lattice Thermal Conductivity in Filled β-Manganese-Type Phases

[Image: see text] Finding a way to interlink heat transport with the crystal structure and order/disorder phenomena is crucial for designing materials with ultralow lattice thermal conductivity. Here, we revisit the crystal structure and explore the thermoelectric properties of several compounds fro...

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Autores principales: Cherniushok, Oleksandr, Cardoso-Gil, Raul, Parashchuk, Taras, Knura, Rafal, Grin, Yuri, Wojciechowski, Krzysztof T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9344398/
https://www.ncbi.nlm.nih.gov/pubmed/35937497
http://dx.doi.org/10.1021/acs.chemmater.2c00915
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author Cherniushok, Oleksandr
Cardoso-Gil, Raul
Parashchuk, Taras
Knura, Rafal
Grin, Yuri
Wojciechowski, Krzysztof T.
author_facet Cherniushok, Oleksandr
Cardoso-Gil, Raul
Parashchuk, Taras
Knura, Rafal
Grin, Yuri
Wojciechowski, Krzysztof T.
author_sort Cherniushok, Oleksandr
collection PubMed
description [Image: see text] Finding a way to interlink heat transport with the crystal structure and order/disorder phenomena is crucial for designing materials with ultralow lattice thermal conductivity. Here, we revisit the crystal structure and explore the thermoelectric properties of several compounds from the family of the filled β-Mn-type phases M(2/n)(n+)Ga(6)Te(10) (M = Pb, Sn, Ca, Na, Na + Ag). The strongly disturbed thermal transport observed in the investigated materials originates from a three-dimensional Te–Ga network with lone-pair-like interactions, which results in large variations of the Ga–Te and M–Te interatomic distances and substantial anharmonic effects. In the particular case of NaAgGa(6)Te(10), the additional presence of different cations leads to bonding inhomogeneity and strong structural disorder, resulting in a dramatically low lattice thermal conductivity (∼0.25 Wm(–1) K(–1) at 298 K), being the lowest among the reported β-Mn-type phases. This study offers a way to develop materials with ultralow lattice thermal conductivity by considering bonding inhomogeneity and lone-pair-like interactions.
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spelling pubmed-93443982022-08-03 Lone-Pair-Like Interaction and Bonding Inhomogeneity Induce Ultralow Lattice Thermal Conductivity in Filled β-Manganese-Type Phases Cherniushok, Oleksandr Cardoso-Gil, Raul Parashchuk, Taras Knura, Rafal Grin, Yuri Wojciechowski, Krzysztof T. Chem Mater [Image: see text] Finding a way to interlink heat transport with the crystal structure and order/disorder phenomena is crucial for designing materials with ultralow lattice thermal conductivity. Here, we revisit the crystal structure and explore the thermoelectric properties of several compounds from the family of the filled β-Mn-type phases M(2/n)(n+)Ga(6)Te(10) (M = Pb, Sn, Ca, Na, Na + Ag). The strongly disturbed thermal transport observed in the investigated materials originates from a three-dimensional Te–Ga network with lone-pair-like interactions, which results in large variations of the Ga–Te and M–Te interatomic distances and substantial anharmonic effects. In the particular case of NaAgGa(6)Te(10), the additional presence of different cations leads to bonding inhomogeneity and strong structural disorder, resulting in a dramatically low lattice thermal conductivity (∼0.25 Wm(–1) K(–1) at 298 K), being the lowest among the reported β-Mn-type phases. This study offers a way to develop materials with ultralow lattice thermal conductivity by considering bonding inhomogeneity and lone-pair-like interactions. American Chemical Society 2022-05-27 2022-07-26 /pmc/articles/PMC9344398/ /pubmed/35937497 http://dx.doi.org/10.1021/acs.chemmater.2c00915 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Cherniushok, Oleksandr
Cardoso-Gil, Raul
Parashchuk, Taras
Knura, Rafal
Grin, Yuri
Wojciechowski, Krzysztof T.
Lone-Pair-Like Interaction and Bonding Inhomogeneity Induce Ultralow Lattice Thermal Conductivity in Filled β-Manganese-Type Phases
title Lone-Pair-Like Interaction and Bonding Inhomogeneity Induce Ultralow Lattice Thermal Conductivity in Filled β-Manganese-Type Phases
title_full Lone-Pair-Like Interaction and Bonding Inhomogeneity Induce Ultralow Lattice Thermal Conductivity in Filled β-Manganese-Type Phases
title_fullStr Lone-Pair-Like Interaction and Bonding Inhomogeneity Induce Ultralow Lattice Thermal Conductivity in Filled β-Manganese-Type Phases
title_full_unstemmed Lone-Pair-Like Interaction and Bonding Inhomogeneity Induce Ultralow Lattice Thermal Conductivity in Filled β-Manganese-Type Phases
title_short Lone-Pair-Like Interaction and Bonding Inhomogeneity Induce Ultralow Lattice Thermal Conductivity in Filled β-Manganese-Type Phases
title_sort lone-pair-like interaction and bonding inhomogeneity induce ultralow lattice thermal conductivity in filled β-manganese-type phases
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9344398/
https://www.ncbi.nlm.nih.gov/pubmed/35937497
http://dx.doi.org/10.1021/acs.chemmater.2c00915
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