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p-Type PVA/MWCNT-Sb(2)Te(3) Composites for Application in Different Types of Flexible Thermoelectric Generators in Combination with n-Type PVA/MWCNT-Bi(2)Se(3) Composites

This work is devoted to the fabrication of p-type polyvinyl alcohol (PVA)-based flexible thermoelectric composites using multiwall carbon nanotubes-antimony telluride (MWCNT-Sb(2)Te(3)) hybrid filler, the study of the thermoelectrical and mechanical properties of these composites, and the applicatio...

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Autores principales: Andzane, Jana, Buks, Krisjanis, Bitenieks, Juris, Bugovecka, Lasma, Kons, Artis, Merijs-Meri, Remo, Svirksts, Janis, Zicans, Janis, Erts, Donats
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9738794/
https://www.ncbi.nlm.nih.gov/pubmed/36501527
http://dx.doi.org/10.3390/polym14235130
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author Andzane, Jana
Buks, Krisjanis
Bitenieks, Juris
Bugovecka, Lasma
Kons, Artis
Merijs-Meri, Remo
Svirksts, Janis
Zicans, Janis
Erts, Donats
author_facet Andzane, Jana
Buks, Krisjanis
Bitenieks, Juris
Bugovecka, Lasma
Kons, Artis
Merijs-Meri, Remo
Svirksts, Janis
Zicans, Janis
Erts, Donats
author_sort Andzane, Jana
collection PubMed
description This work is devoted to the fabrication of p-type polyvinyl alcohol (PVA)-based flexible thermoelectric composites using multiwall carbon nanotubes-antimony telluride (MWCNT-Sb(2)Te(3)) hybrid filler, the study of the thermoelectrical and mechanical properties of these composites, and the application of these composites in two types (planar and radial) of thermoelectric generators (TEG) in combination with the previously reported PVA/MWCNT-Bi(2)Se(3) flexible thermoelectric composites. While the power factors of PVA/MWCNT-Sb(2)Te(3) and PVA/MWCNT-Bi(2)Se(3) composites with 15 wt.% filler were found to be similar, the PVA/MWCNT-Sb(2)Te(3) composite with 25 wt.% filler showed a ~2 times higher power factor in comparison with the PVA/MWCNT-Bi(2)Se(3) composites with 30 wt.% filler, which is attributed to its reduced electrical resistivity. In addition, developed PVA/MWCNT-Sb(2)Te(3) composites showed a superior mechanical, electrical, and thermoelectric stability during 100 consequent bending cycles down to a 3 mm radius, with insignificant fluctuations of the resistance within 0.01% of the initial resistance value of the not bent sample. Demonstrated for the first time, 2-leg TEGs composed from p-type PVA/MWCNT-Sb(2)Te(3) and n-type PVA/MWCNT-Bi(2)Se(3) composites showed a stable performance under different external loads and showed their potential for applications involving low temperature gradients and power requirements in the range of nW.
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spelling pubmed-97387942022-12-11 p-Type PVA/MWCNT-Sb(2)Te(3) Composites for Application in Different Types of Flexible Thermoelectric Generators in Combination with n-Type PVA/MWCNT-Bi(2)Se(3) Composites Andzane, Jana Buks, Krisjanis Bitenieks, Juris Bugovecka, Lasma Kons, Artis Merijs-Meri, Remo Svirksts, Janis Zicans, Janis Erts, Donats Polymers (Basel) Article This work is devoted to the fabrication of p-type polyvinyl alcohol (PVA)-based flexible thermoelectric composites using multiwall carbon nanotubes-antimony telluride (MWCNT-Sb(2)Te(3)) hybrid filler, the study of the thermoelectrical and mechanical properties of these composites, and the application of these composites in two types (planar and radial) of thermoelectric generators (TEG) in combination with the previously reported PVA/MWCNT-Bi(2)Se(3) flexible thermoelectric composites. While the power factors of PVA/MWCNT-Sb(2)Te(3) and PVA/MWCNT-Bi(2)Se(3) composites with 15 wt.% filler were found to be similar, the PVA/MWCNT-Sb(2)Te(3) composite with 25 wt.% filler showed a ~2 times higher power factor in comparison with the PVA/MWCNT-Bi(2)Se(3) composites with 30 wt.% filler, which is attributed to its reduced electrical resistivity. In addition, developed PVA/MWCNT-Sb(2)Te(3) composites showed a superior mechanical, electrical, and thermoelectric stability during 100 consequent bending cycles down to a 3 mm radius, with insignificant fluctuations of the resistance within 0.01% of the initial resistance value of the not bent sample. Demonstrated for the first time, 2-leg TEGs composed from p-type PVA/MWCNT-Sb(2)Te(3) and n-type PVA/MWCNT-Bi(2)Se(3) composites showed a stable performance under different external loads and showed their potential for applications involving low temperature gradients and power requirements in the range of nW. MDPI 2022-11-25 /pmc/articles/PMC9738794/ /pubmed/36501527 http://dx.doi.org/10.3390/polym14235130 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Andzane, Jana
Buks, Krisjanis
Bitenieks, Juris
Bugovecka, Lasma
Kons, Artis
Merijs-Meri, Remo
Svirksts, Janis
Zicans, Janis
Erts, Donats
p-Type PVA/MWCNT-Sb(2)Te(3) Composites for Application in Different Types of Flexible Thermoelectric Generators in Combination with n-Type PVA/MWCNT-Bi(2)Se(3) Composites
title p-Type PVA/MWCNT-Sb(2)Te(3) Composites for Application in Different Types of Flexible Thermoelectric Generators in Combination with n-Type PVA/MWCNT-Bi(2)Se(3) Composites
title_full p-Type PVA/MWCNT-Sb(2)Te(3) Composites for Application in Different Types of Flexible Thermoelectric Generators in Combination with n-Type PVA/MWCNT-Bi(2)Se(3) Composites
title_fullStr p-Type PVA/MWCNT-Sb(2)Te(3) Composites for Application in Different Types of Flexible Thermoelectric Generators in Combination with n-Type PVA/MWCNT-Bi(2)Se(3) Composites
title_full_unstemmed p-Type PVA/MWCNT-Sb(2)Te(3) Composites for Application in Different Types of Flexible Thermoelectric Generators in Combination with n-Type PVA/MWCNT-Bi(2)Se(3) Composites
title_short p-Type PVA/MWCNT-Sb(2)Te(3) Composites for Application in Different Types of Flexible Thermoelectric Generators in Combination with n-Type PVA/MWCNT-Bi(2)Se(3) Composites
title_sort p-type pva/mwcnt-sb(2)te(3) composites for application in different types of flexible thermoelectric generators in combination with n-type pva/mwcnt-bi(2)se(3) composites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9738794/
https://www.ncbi.nlm.nih.gov/pubmed/36501527
http://dx.doi.org/10.3390/polym14235130
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