Intrinsic nanostructure induced ultralow thermal conductivity yields enhanced thermoelectric performance in Zintl phase Eu2ZnSb2

Understanding mechanisms for obtaining low thermal conductivity without degraded electrical properties remains a challenge. Here, the authors reveal a mechanism for thermal conductivity reduction in a Zintl phase thermoelectric based on length scales for disorder in Eu2ZnSb2.

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Autores principales: Chen Chen, Zhenzhen Feng, Honghao Yao, Feng Cao, Bing-Hua Lei, Yumei Wang, Yue Chen, David J. Singh, Qian Zhang
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/f8a72d0a125a4c77a7da12c15ece7aaf
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spelling oai:doaj.org-article:f8a72d0a125a4c77a7da12c15ece7aaf2021-12-02T19:16:47ZIntrinsic nanostructure induced ultralow thermal conductivity yields enhanced thermoelectric performance in Zintl phase Eu2ZnSb210.1038/s41467-021-25483-w2041-1723https://doaj.org/article/f8a72d0a125a4c77a7da12c15ece7aaf2021-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25483-whttps://doaj.org/toc/2041-1723Understanding mechanisms for obtaining low thermal conductivity without degraded electrical properties remains a challenge. Here, the authors reveal a mechanism for thermal conductivity reduction in a Zintl phase thermoelectric based on length scales for disorder in Eu2ZnSb2.Chen ChenZhenzhen FengHonghao YaoFeng CaoBing-Hua LeiYumei WangYue ChenDavid J. SinghQian ZhangNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-9 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Chen Chen
Zhenzhen Feng
Honghao Yao
Feng Cao
Bing-Hua Lei
Yumei Wang
Yue Chen
David J. Singh
Qian Zhang
Intrinsic nanostructure induced ultralow thermal conductivity yields enhanced thermoelectric performance in Zintl phase Eu2ZnSb2
description Understanding mechanisms for obtaining low thermal conductivity without degraded electrical properties remains a challenge. Here, the authors reveal a mechanism for thermal conductivity reduction in a Zintl phase thermoelectric based on length scales for disorder in Eu2ZnSb2.
format article
author Chen Chen
Zhenzhen Feng
Honghao Yao
Feng Cao
Bing-Hua Lei
Yumei Wang
Yue Chen
David J. Singh
Qian Zhang
author_facet Chen Chen
Zhenzhen Feng
Honghao Yao
Feng Cao
Bing-Hua Lei
Yumei Wang
Yue Chen
David J. Singh
Qian Zhang
author_sort Chen Chen
title Intrinsic nanostructure induced ultralow thermal conductivity yields enhanced thermoelectric performance in Zintl phase Eu2ZnSb2
title_short Intrinsic nanostructure induced ultralow thermal conductivity yields enhanced thermoelectric performance in Zintl phase Eu2ZnSb2
title_full Intrinsic nanostructure induced ultralow thermal conductivity yields enhanced thermoelectric performance in Zintl phase Eu2ZnSb2
title_fullStr Intrinsic nanostructure induced ultralow thermal conductivity yields enhanced thermoelectric performance in Zintl phase Eu2ZnSb2
title_full_unstemmed Intrinsic nanostructure induced ultralow thermal conductivity yields enhanced thermoelectric performance in Zintl phase Eu2ZnSb2
title_sort intrinsic nanostructure induced ultralow thermal conductivity yields enhanced thermoelectric performance in zintl phase eu2znsb2
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/f8a72d0a125a4c77a7da12c15ece7aaf
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AT honghaoyao intrinsicnanostructureinducedultralowthermalconductivityyieldsenhancedthermoelectricperformanceinzintlphaseeu2znsb2
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AT yuechen intrinsicnanostructureinducedultralowthermalconductivityyieldsenhancedthermoelectricperformanceinzintlphaseeu2znsb2
AT davidjsingh intrinsicnanostructureinducedultralowthermalconductivityyieldsenhancedthermoelectricperformanceinzintlphaseeu2znsb2
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