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Ternary selenides A(2)Sb(4)Se(8) (A = K, Rb and Cs) as an n-type thermoelectric material with high power factor and low lattice thermal conductivity: importance of the conformationally flexible Sb–Se–Se–Sb bridges

We investigated the thermoelectric properties of the layered ternary selenides A(2)Sb(4)Se(8) (A = K, Rb and Cs) and the lattice thermal conductivity of K(2)Sb(4)Se(8) on the basis of DFT calculations, to find that these selenides are a high-performance n-type thermoelectric material. The Seebeck co...

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Autores principales: Lee, Changhoon, Kim, Sujee, Son, Won-Joon, Shim, Ji-Hoon, Whangbo, Myung-Hwan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9051912/
https://www.ncbi.nlm.nih.gov/pubmed/35498457
http://dx.doi.org/10.1039/d0ra01751e
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author Lee, Changhoon
Kim, Sujee
Son, Won-Joon
Shim, Ji-Hoon
Whangbo, Myung-Hwan
author_facet Lee, Changhoon
Kim, Sujee
Son, Won-Joon
Shim, Ji-Hoon
Whangbo, Myung-Hwan
author_sort Lee, Changhoon
collection PubMed
description We investigated the thermoelectric properties of the layered ternary selenides A(2)Sb(4)Se(8) (A = K, Rb and Cs) and the lattice thermal conductivity of K(2)Sb(4)Se(8) on the basis of DFT calculations, to find that these selenides are a high-performance n-type thermoelectric material. The Seebeck coefficients and power factors calculated for the electron carriers of A(2)Sb(4)Se(8) (A = K, Rb and Cs) are greater than those of the well-known thermoelectric materials Bi(2)Te(3) and PbTe. The lattice thermal conductivity κ(latt) of K(2)Sb(4)Se(8) is comparable to that of PbTe, well-known for its low lattice thermal conductivity. In terms of both electronic and phonon structures, the structural parts of the A(2)Sb(4)Se(8) (A = K, Rb and Cs) phases crucial for their thermoelectric properties are the conformationally-flexible Sb–Se–Se–Sb bridges that interlink between their structurally rigid units.
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spelling pubmed-90519122022-04-29 Ternary selenides A(2)Sb(4)Se(8) (A = K, Rb and Cs) as an n-type thermoelectric material with high power factor and low lattice thermal conductivity: importance of the conformationally flexible Sb–Se–Se–Sb bridges Lee, Changhoon Kim, Sujee Son, Won-Joon Shim, Ji-Hoon Whangbo, Myung-Hwan RSC Adv Chemistry We investigated the thermoelectric properties of the layered ternary selenides A(2)Sb(4)Se(8) (A = K, Rb and Cs) and the lattice thermal conductivity of K(2)Sb(4)Se(8) on the basis of DFT calculations, to find that these selenides are a high-performance n-type thermoelectric material. The Seebeck coefficients and power factors calculated for the electron carriers of A(2)Sb(4)Se(8) (A = K, Rb and Cs) are greater than those of the well-known thermoelectric materials Bi(2)Te(3) and PbTe. The lattice thermal conductivity κ(latt) of K(2)Sb(4)Se(8) is comparable to that of PbTe, well-known for its low lattice thermal conductivity. In terms of both electronic and phonon structures, the structural parts of the A(2)Sb(4)Se(8) (A = K, Rb and Cs) phases crucial for their thermoelectric properties are the conformationally-flexible Sb–Se–Se–Sb bridges that interlink between their structurally rigid units. The Royal Society of Chemistry 2020-04-07 /pmc/articles/PMC9051912/ /pubmed/35498457 http://dx.doi.org/10.1039/d0ra01751e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Lee, Changhoon
Kim, Sujee
Son, Won-Joon
Shim, Ji-Hoon
Whangbo, Myung-Hwan
Ternary selenides A(2)Sb(4)Se(8) (A = K, Rb and Cs) as an n-type thermoelectric material with high power factor and low lattice thermal conductivity: importance of the conformationally flexible Sb–Se–Se–Sb bridges
title Ternary selenides A(2)Sb(4)Se(8) (A = K, Rb and Cs) as an n-type thermoelectric material with high power factor and low lattice thermal conductivity: importance of the conformationally flexible Sb–Se–Se–Sb bridges
title_full Ternary selenides A(2)Sb(4)Se(8) (A = K, Rb and Cs) as an n-type thermoelectric material with high power factor and low lattice thermal conductivity: importance of the conformationally flexible Sb–Se–Se–Sb bridges
title_fullStr Ternary selenides A(2)Sb(4)Se(8) (A = K, Rb and Cs) as an n-type thermoelectric material with high power factor and low lattice thermal conductivity: importance of the conformationally flexible Sb–Se–Se–Sb bridges
title_full_unstemmed Ternary selenides A(2)Sb(4)Se(8) (A = K, Rb and Cs) as an n-type thermoelectric material with high power factor and low lattice thermal conductivity: importance of the conformationally flexible Sb–Se–Se–Sb bridges
title_short Ternary selenides A(2)Sb(4)Se(8) (A = K, Rb and Cs) as an n-type thermoelectric material with high power factor and low lattice thermal conductivity: importance of the conformationally flexible Sb–Se–Se–Sb bridges
title_sort ternary selenides a(2)sb(4)se(8) (a = k, rb and cs) as an n-type thermoelectric material with high power factor and low lattice thermal conductivity: importance of the conformationally flexible sb–se–se–sb bridges
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9051912/
https://www.ncbi.nlm.nih.gov/pubmed/35498457
http://dx.doi.org/10.1039/d0ra01751e
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