Discovery of TaFeSb-based half-Heuslers with high thermoelectric performance

The discovery of thermodynamically stable thermoelectric materials for power generation has relied on empirical methods that were not effective. Here, the authors apply the inverse design approach to identify and experimentally realize TaFeSb-based half Heuslers with high thermoelectric performance.

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Autores principales: Hangtian Zhu, Jun Mao, Yuwei Li, Jifeng Sun, Yumei Wang, Qing Zhu, Guannan Li, Qichen Song, Jiawei Zhou, Yuhao Fu, Ran He, Tian Tong, Zihang Liu, Wuyang Ren, Li You, Zhiming Wang, Jun Luo, Andrei Sotnikov, Jiming Bao, Kornelius Nielsch, Gang Chen, David J. Singh, Zhifeng Ren
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/cbf2951ce439416ba69e8ef2b8ce24d2
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spelling oai:doaj.org-article:cbf2951ce439416ba69e8ef2b8ce24d22021-12-02T14:38:45ZDiscovery of TaFeSb-based half-Heuslers with high thermoelectric performance10.1038/s41467-018-08223-52041-1723https://doaj.org/article/cbf2951ce439416ba69e8ef2b8ce24d22019-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-08223-5https://doaj.org/toc/2041-1723The discovery of thermodynamically stable thermoelectric materials for power generation has relied on empirical methods that were not effective. Here, the authors apply the inverse design approach to identify and experimentally realize TaFeSb-based half Heuslers with high thermoelectric performance.Hangtian ZhuJun MaoYuwei LiJifeng SunYumei WangQing ZhuGuannan LiQichen SongJiawei ZhouYuhao FuRan HeTian TongZihang LiuWuyang RenLi YouZhiming WangJun LuoAndrei SotnikovJiming BaoKornelius NielschGang ChenDavid J. SinghZhifeng RenNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-8 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Hangtian Zhu
Jun Mao
Yuwei Li
Jifeng Sun
Yumei Wang
Qing Zhu
Guannan Li
Qichen Song
Jiawei Zhou
Yuhao Fu
Ran He
Tian Tong
Zihang Liu
Wuyang Ren
Li You
Zhiming Wang
Jun Luo
Andrei Sotnikov
Jiming Bao
Kornelius Nielsch
Gang Chen
David J. Singh
Zhifeng Ren
Discovery of TaFeSb-based half-Heuslers with high thermoelectric performance
description The discovery of thermodynamically stable thermoelectric materials for power generation has relied on empirical methods that were not effective. Here, the authors apply the inverse design approach to identify and experimentally realize TaFeSb-based half Heuslers with high thermoelectric performance.
format article
author Hangtian Zhu
Jun Mao
Yuwei Li
Jifeng Sun
Yumei Wang
Qing Zhu
Guannan Li
Qichen Song
Jiawei Zhou
Yuhao Fu
Ran He
Tian Tong
Zihang Liu
Wuyang Ren
Li You
Zhiming Wang
Jun Luo
Andrei Sotnikov
Jiming Bao
Kornelius Nielsch
Gang Chen
David J. Singh
Zhifeng Ren
author_facet Hangtian Zhu
Jun Mao
Yuwei Li
Jifeng Sun
Yumei Wang
Qing Zhu
Guannan Li
Qichen Song
Jiawei Zhou
Yuhao Fu
Ran He
Tian Tong
Zihang Liu
Wuyang Ren
Li You
Zhiming Wang
Jun Luo
Andrei Sotnikov
Jiming Bao
Kornelius Nielsch
Gang Chen
David J. Singh
Zhifeng Ren
author_sort Hangtian Zhu
title Discovery of TaFeSb-based half-Heuslers with high thermoelectric performance
title_short Discovery of TaFeSb-based half-Heuslers with high thermoelectric performance
title_full Discovery of TaFeSb-based half-Heuslers with high thermoelectric performance
title_fullStr Discovery of TaFeSb-based half-Heuslers with high thermoelectric performance
title_full_unstemmed Discovery of TaFeSb-based half-Heuslers with high thermoelectric performance
title_sort discovery of tafesb-based half-heuslers with high thermoelectric performance
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/cbf2951ce439416ba69e8ef2b8ce24d2
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