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Thermoelectric Enhancements in PbTe Alloys Due to Dislocation‐Induced Strains and Converged Bands

In‐grain dislocation‐induced lattice strain fluctuations are recently revealed as an effective avenue for minimizing the lattice thermal conductivity. This effect could be integratable with electronic enhancements such as by band convergence, for a great advancement in thermoelectric performance. Th...

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Autores principales: Wu, Yixuan, Nan, Pengfei, Chen, Zhiwei, Zeng, Zezhu, Liu, Ruiheng, Dong, Hongliang, Xie, Li, Xiao, Youwei, Chen, Zhiqiang, Gu, Hongkai, Li, Wen, Chen, Yue, Ge, Binghui, Pei, Yanzhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7312309/
https://www.ncbi.nlm.nih.gov/pubmed/32596105
http://dx.doi.org/10.1002/advs.201902628
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author Wu, Yixuan
Nan, Pengfei
Chen, Zhiwei
Zeng, Zezhu
Liu, Ruiheng
Dong, Hongliang
Xie, Li
Xiao, Youwei
Chen, Zhiqiang
Gu, Hongkai
Li, Wen
Chen, Yue
Ge, Binghui
Pei, Yanzhong
author_facet Wu, Yixuan
Nan, Pengfei
Chen, Zhiwei
Zeng, Zezhu
Liu, Ruiheng
Dong, Hongliang
Xie, Li
Xiao, Youwei
Chen, Zhiqiang
Gu, Hongkai
Li, Wen
Chen, Yue
Ge, Binghui
Pei, Yanzhong
author_sort Wu, Yixuan
collection PubMed
description In‐grain dislocation‐induced lattice strain fluctuations are recently revealed as an effective avenue for minimizing the lattice thermal conductivity. This effect could be integratable with electronic enhancements such as by band convergence, for a great advancement in thermoelectric performance. This motivates the current work to focus on the thermoelectric enhancements of p‐type PbTe alloys, where monotelluride‐alloying and Na‐doping are used for a simultaneous manipulation on both dislocation and band structures. As confirmed by synchrotron X‐ray diffractions and Raman measurements, the resultant dense in‐grain dislocations induce lattice strain fluctuations for broadening the phonon dispersion, leading to an exceptionally low lattice thermal conductivity of ≈0. 4 W m‐K(−1). Band structure calculations reveal the convergence of valence bands due to monotelluride‐alloying. Eventually, the integration of both electronic and thermal improvements lead to a realization of an extraordinary figure of merit zT of ≈2.5 in Na(0.03)Eu(0.03)Cd(0.03)Pb(0.91)Te alloy at 850 K.
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spelling pubmed-73123092020-06-25 Thermoelectric Enhancements in PbTe Alloys Due to Dislocation‐Induced Strains and Converged Bands Wu, Yixuan Nan, Pengfei Chen, Zhiwei Zeng, Zezhu Liu, Ruiheng Dong, Hongliang Xie, Li Xiao, Youwei Chen, Zhiqiang Gu, Hongkai Li, Wen Chen, Yue Ge, Binghui Pei, Yanzhong Adv Sci (Weinh) Full Papers In‐grain dislocation‐induced lattice strain fluctuations are recently revealed as an effective avenue for minimizing the lattice thermal conductivity. This effect could be integratable with electronic enhancements such as by band convergence, for a great advancement in thermoelectric performance. This motivates the current work to focus on the thermoelectric enhancements of p‐type PbTe alloys, where monotelluride‐alloying and Na‐doping are used for a simultaneous manipulation on both dislocation and band structures. As confirmed by synchrotron X‐ray diffractions and Raman measurements, the resultant dense in‐grain dislocations induce lattice strain fluctuations for broadening the phonon dispersion, leading to an exceptionally low lattice thermal conductivity of ≈0. 4 W m‐K(−1). Band structure calculations reveal the convergence of valence bands due to monotelluride‐alloying. Eventually, the integration of both electronic and thermal improvements lead to a realization of an extraordinary figure of merit zT of ≈2.5 in Na(0.03)Eu(0.03)Cd(0.03)Pb(0.91)Te alloy at 850 K. John Wiley and Sons Inc. 2020-05-15 /pmc/articles/PMC7312309/ /pubmed/32596105 http://dx.doi.org/10.1002/advs.201902628 Text en © 2020 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Wu, Yixuan
Nan, Pengfei
Chen, Zhiwei
Zeng, Zezhu
Liu, Ruiheng
Dong, Hongliang
Xie, Li
Xiao, Youwei
Chen, Zhiqiang
Gu, Hongkai
Li, Wen
Chen, Yue
Ge, Binghui
Pei, Yanzhong
Thermoelectric Enhancements in PbTe Alloys Due to Dislocation‐Induced Strains and Converged Bands
title Thermoelectric Enhancements in PbTe Alloys Due to Dislocation‐Induced Strains and Converged Bands
title_full Thermoelectric Enhancements in PbTe Alloys Due to Dislocation‐Induced Strains and Converged Bands
title_fullStr Thermoelectric Enhancements in PbTe Alloys Due to Dislocation‐Induced Strains and Converged Bands
title_full_unstemmed Thermoelectric Enhancements in PbTe Alloys Due to Dislocation‐Induced Strains and Converged Bands
title_short Thermoelectric Enhancements in PbTe Alloys Due to Dislocation‐Induced Strains and Converged Bands
title_sort thermoelectric enhancements in pbte alloys due to dislocation‐induced strains and converged bands
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7312309/
https://www.ncbi.nlm.nih.gov/pubmed/32596105
http://dx.doi.org/10.1002/advs.201902628
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