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Synthesis and high temperature thermoelectric properties of Yb(0.25)Co(4)Sb(12)-(Ag(2)Te)(x)(Sb(2)Te(3))(1−x) nanocomposites

Nanocomposites are becoming a new paradigm in thermoelectric study: by incorporating nanophase(s) into a bulk matrix, a nanocomposite often exhibits unusual thermoelectric properties beyond its constituent phases. To date most nanophases are binary, while reports on ternary nanoinclusions are scarce...

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Detalles Bibliográficos
Autores principales: Zheng, Jin, Peng, Jiangying, Zheng, Zhexin, Zhou, Menghan, Thompson, Emily, Yang, Junyou, Xiao, Wanli
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4558526/
https://www.ncbi.nlm.nih.gov/pubmed/26389111
http://dx.doi.org/10.3389/fchem.2015.00053
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author Zheng, Jin
Peng, Jiangying
Zheng, Zhexin
Zhou, Menghan
Thompson, Emily
Yang, Junyou
Xiao, Wanli
author_facet Zheng, Jin
Peng, Jiangying
Zheng, Zhexin
Zhou, Menghan
Thompson, Emily
Yang, Junyou
Xiao, Wanli
author_sort Zheng, Jin
collection PubMed
description Nanocomposites are becoming a new paradigm in thermoelectric study: by incorporating nanophase(s) into a bulk matrix, a nanocomposite often exhibits unusual thermoelectric properties beyond its constituent phases. To date most nanophases are binary, while reports on ternary nanoinclusions are scarce. In this work, we conducted an exploratory study of introducing ternary (Ag(2)Te)(x)(Sb(2)Te(3))(1−x) inclusions in the host matrix of Yb(0.25)Co(4)Sb(12). Yb(0.25)Co(4)Sb(12)-4wt% (Ag(2)Te)(x)(Sb(2)Te(3))(1−x) nanocomposites were prepared by a melting-milling-hot-pressing process. Microstructural analysis showed that poly-dispersed nanosized Ag-Sb-Te inclusions are distributed on the grain boundaries of Yb(0.25)Co(4)Sb(12) coarse grains. Compared to the pristine nanoinclusion-free sample, the electrical conductivity, Seebeck coefficient, and thermal conductivity were optimized simultaneously upon nanocompositing, while the carrier mobility was largely remained. A maximum ZT of 1.3 was obtained in Yb(0.25)Co(4)Sb(12)-4wt% (Ag(2)Te)(0.42)(Sb(2)Te(3))(0.58) at 773 K, a ~ 40% increase compared to the pristine sample. The electron and phonon mean-free-path were estimated to help quantify the observed changes in the carrier mobility and lattice thermal conductivity.
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spelling pubmed-45585262015-09-18 Synthesis and high temperature thermoelectric properties of Yb(0.25)Co(4)Sb(12)-(Ag(2)Te)(x)(Sb(2)Te(3))(1−x) nanocomposites Zheng, Jin Peng, Jiangying Zheng, Zhexin Zhou, Menghan Thompson, Emily Yang, Junyou Xiao, Wanli Front Chem Chemistry Nanocomposites are becoming a new paradigm in thermoelectric study: by incorporating nanophase(s) into a bulk matrix, a nanocomposite often exhibits unusual thermoelectric properties beyond its constituent phases. To date most nanophases are binary, while reports on ternary nanoinclusions are scarce. In this work, we conducted an exploratory study of introducing ternary (Ag(2)Te)(x)(Sb(2)Te(3))(1−x) inclusions in the host matrix of Yb(0.25)Co(4)Sb(12). Yb(0.25)Co(4)Sb(12)-4wt% (Ag(2)Te)(x)(Sb(2)Te(3))(1−x) nanocomposites were prepared by a melting-milling-hot-pressing process. Microstructural analysis showed that poly-dispersed nanosized Ag-Sb-Te inclusions are distributed on the grain boundaries of Yb(0.25)Co(4)Sb(12) coarse grains. Compared to the pristine nanoinclusion-free sample, the electrical conductivity, Seebeck coefficient, and thermal conductivity were optimized simultaneously upon nanocompositing, while the carrier mobility was largely remained. A maximum ZT of 1.3 was obtained in Yb(0.25)Co(4)Sb(12)-4wt% (Ag(2)Te)(0.42)(Sb(2)Te(3))(0.58) at 773 K, a ~ 40% increase compared to the pristine sample. The electron and phonon mean-free-path were estimated to help quantify the observed changes in the carrier mobility and lattice thermal conductivity. Frontiers Media S.A. 2015-09-03 /pmc/articles/PMC4558526/ /pubmed/26389111 http://dx.doi.org/10.3389/fchem.2015.00053 Text en Copyright © 2015 Zheng, Peng, Zheng, Zhou, Thompson, Yang and Xiao. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Zheng, Jin
Peng, Jiangying
Zheng, Zhexin
Zhou, Menghan
Thompson, Emily
Yang, Junyou
Xiao, Wanli
Synthesis and high temperature thermoelectric properties of Yb(0.25)Co(4)Sb(12)-(Ag(2)Te)(x)(Sb(2)Te(3))(1−x) nanocomposites
title Synthesis and high temperature thermoelectric properties of Yb(0.25)Co(4)Sb(12)-(Ag(2)Te)(x)(Sb(2)Te(3))(1−x) nanocomposites
title_full Synthesis and high temperature thermoelectric properties of Yb(0.25)Co(4)Sb(12)-(Ag(2)Te)(x)(Sb(2)Te(3))(1−x) nanocomposites
title_fullStr Synthesis and high temperature thermoelectric properties of Yb(0.25)Co(4)Sb(12)-(Ag(2)Te)(x)(Sb(2)Te(3))(1−x) nanocomposites
title_full_unstemmed Synthesis and high temperature thermoelectric properties of Yb(0.25)Co(4)Sb(12)-(Ag(2)Te)(x)(Sb(2)Te(3))(1−x) nanocomposites
title_short Synthesis and high temperature thermoelectric properties of Yb(0.25)Co(4)Sb(12)-(Ag(2)Te)(x)(Sb(2)Te(3))(1−x) nanocomposites
title_sort synthesis and high temperature thermoelectric properties of yb(0.25)co(4)sb(12)-(ag(2)te)(x)(sb(2)te(3))(1−x) nanocomposites
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4558526/
https://www.ncbi.nlm.nih.gov/pubmed/26389111
http://dx.doi.org/10.3389/fchem.2015.00053
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