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Manipulation of Band Degeneracy and Lattice Strain for Extraordinary PbTe Thermoelectrics

Maximizing band degeneracy and minimizing phonon relaxation time are proven to be successful for advancing thermoelectrics. Alloying with monotellurides has been known to be an effective approach for converging the valence bands of PbTe for electronic improvements, while the lattice thermal conducti...

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Autores principales: Wu, Yixuan, Nan, Pengfei, Chen, Zhiwei, Zeng, Zezhu, Lin, Siqi, Zhang, Xinyue, Dong, Hongliang, Chen, Zhiqiang, Gu, Hongkai, Li, Wen, Chen, Yue, Ge, Binghui, Pei, Yanzhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAAS 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7000992/
https://www.ncbi.nlm.nih.gov/pubmed/32025663
http://dx.doi.org/10.34133/2020/8151059
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author Wu, Yixuan
Nan, Pengfei
Chen, Zhiwei
Zeng, Zezhu
Lin, Siqi
Zhang, Xinyue
Dong, Hongliang
Chen, Zhiqiang
Gu, Hongkai
Li, Wen
Chen, Yue
Ge, Binghui
Pei, Yanzhong
author_facet Wu, Yixuan
Nan, Pengfei
Chen, Zhiwei
Zeng, Zezhu
Lin, Siqi
Zhang, Xinyue
Dong, Hongliang
Chen, Zhiqiang
Gu, Hongkai
Li, Wen
Chen, Yue
Ge, Binghui
Pei, Yanzhong
author_sort Wu, Yixuan
collection PubMed
description Maximizing band degeneracy and minimizing phonon relaxation time are proven to be successful for advancing thermoelectrics. Alloying with monotellurides has been known to be an effective approach for converging the valence bands of PbTe for electronic improvements, while the lattice thermal conductivity of the materials remains available room for being further reduced. It is recently revealed that the broadening of phonon dispersion measures the strength of phonon scattering, and lattice dislocations are particularly effective sources for such broadening through lattice strain fluctuations. In this work, a fine control of MnTe and EuTe alloying enables a significant increase in density of electron states near the valence band edge of PbTe due to involvement of multiple transporting bands, while the creation of dense in-grain dislocations leads to an effective broadening in phonon dispersion for reduced phonon lifetime due to the large strain fluctuations of dislocations as confirmed by synchrotron X-ray diffraction. The synergy of both electronic and thermal improvements successfully leads the average thermoelectric figure of merit to be higher than that ever reported for p-type PbTe at working temperatures.
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spelling pubmed-70009922020-02-05 Manipulation of Band Degeneracy and Lattice Strain for Extraordinary PbTe Thermoelectrics Wu, Yixuan Nan, Pengfei Chen, Zhiwei Zeng, Zezhu Lin, Siqi Zhang, Xinyue Dong, Hongliang Chen, Zhiqiang Gu, Hongkai Li, Wen Chen, Yue Ge, Binghui Pei, Yanzhong Research (Wash D C) Research Article Maximizing band degeneracy and minimizing phonon relaxation time are proven to be successful for advancing thermoelectrics. Alloying with monotellurides has been known to be an effective approach for converging the valence bands of PbTe for electronic improvements, while the lattice thermal conductivity of the materials remains available room for being further reduced. It is recently revealed that the broadening of phonon dispersion measures the strength of phonon scattering, and lattice dislocations are particularly effective sources for such broadening through lattice strain fluctuations. In this work, a fine control of MnTe and EuTe alloying enables a significant increase in density of electron states near the valence band edge of PbTe due to involvement of multiple transporting bands, while the creation of dense in-grain dislocations leads to an effective broadening in phonon dispersion for reduced phonon lifetime due to the large strain fluctuations of dislocations as confirmed by synchrotron X-ray diffraction. The synergy of both electronic and thermal improvements successfully leads the average thermoelectric figure of merit to be higher than that ever reported for p-type PbTe at working temperatures. AAAS 2020-01-24 /pmc/articles/PMC7000992/ /pubmed/32025663 http://dx.doi.org/10.34133/2020/8151059 Text en Copyright © 2020 Yixuan Wu et al. http://creativecommons.org/licenses/by/4.0/ Exclusive Licensee Science and Technology Review Publishing House. Distributed under a Creative Commons Attribution License (CC BY 4.0).
spellingShingle Research Article
Wu, Yixuan
Nan, Pengfei
Chen, Zhiwei
Zeng, Zezhu
Lin, Siqi
Zhang, Xinyue
Dong, Hongliang
Chen, Zhiqiang
Gu, Hongkai
Li, Wen
Chen, Yue
Ge, Binghui
Pei, Yanzhong
Manipulation of Band Degeneracy and Lattice Strain for Extraordinary PbTe Thermoelectrics
title Manipulation of Band Degeneracy and Lattice Strain for Extraordinary PbTe Thermoelectrics
title_full Manipulation of Band Degeneracy and Lattice Strain for Extraordinary PbTe Thermoelectrics
title_fullStr Manipulation of Band Degeneracy and Lattice Strain for Extraordinary PbTe Thermoelectrics
title_full_unstemmed Manipulation of Band Degeneracy and Lattice Strain for Extraordinary PbTe Thermoelectrics
title_short Manipulation of Band Degeneracy and Lattice Strain for Extraordinary PbTe Thermoelectrics
title_sort manipulation of band degeneracy and lattice strain for extraordinary pbte thermoelectrics
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7000992/
https://www.ncbi.nlm.nih.gov/pubmed/32025663
http://dx.doi.org/10.34133/2020/8151059
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