High thermoelectric performance enabled by convergence of nested conduction bands in Pb7Bi4Se13 with low thermal conductivity

Lillianite materials usually have low thermoelectric efficiency due to the inherently inferior electrical properties. Here, the authors evaluate thermoelectric performances in Pb7Bi4Se13 based lillianites enabled by convergence of nested conduction bands.

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Autores principales: Lei Hu, Yue-Wen Fang, Feiyu Qin, Xun Cao, Xiaoxu Zhao, Yubo Luo, Durga Venkata Maheswar Repaka, Wenbo Luo, Ady Suwardi, Thomas Soldi, Umut Aydemir, Yizhong Huang, Zheng Liu, Kedar Hippalgaonkar, G. Jeffrey Snyder, Jianwei Xu, Qingyu Yan
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/ef0462e36b6f4c3aa55c21999851f87a
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spelling oai:doaj.org-article:ef0462e36b6f4c3aa55c21999851f87a2021-12-02T16:27:55ZHigh thermoelectric performance enabled by convergence of nested conduction bands in Pb7Bi4Se13 with low thermal conductivity10.1038/s41467-021-25119-z2041-1723https://doaj.org/article/ef0462e36b6f4c3aa55c21999851f87a2021-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25119-zhttps://doaj.org/toc/2041-1723Lillianite materials usually have low thermoelectric efficiency due to the inherently inferior electrical properties. Here, the authors evaluate thermoelectric performances in Pb7Bi4Se13 based lillianites enabled by convergence of nested conduction bands.Lei HuYue-Wen FangFeiyu QinXun CaoXiaoxu ZhaoYubo LuoDurga Venkata Maheswar RepakaWenbo LuoAdy SuwardiThomas SoldiUmut AydemirYizhong HuangZheng LiuKedar HippalgaonkarG. Jeffrey SnyderJianwei XuQingyu YanNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-10 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Lei Hu
Yue-Wen Fang
Feiyu Qin
Xun Cao
Xiaoxu Zhao
Yubo Luo
Durga Venkata Maheswar Repaka
Wenbo Luo
Ady Suwardi
Thomas Soldi
Umut Aydemir
Yizhong Huang
Zheng Liu
Kedar Hippalgaonkar
G. Jeffrey Snyder
Jianwei Xu
Qingyu Yan
High thermoelectric performance enabled by convergence of nested conduction bands in Pb7Bi4Se13 with low thermal conductivity
description Lillianite materials usually have low thermoelectric efficiency due to the inherently inferior electrical properties. Here, the authors evaluate thermoelectric performances in Pb7Bi4Se13 based lillianites enabled by convergence of nested conduction bands.
format article
author Lei Hu
Yue-Wen Fang
Feiyu Qin
Xun Cao
Xiaoxu Zhao
Yubo Luo
Durga Venkata Maheswar Repaka
Wenbo Luo
Ady Suwardi
Thomas Soldi
Umut Aydemir
Yizhong Huang
Zheng Liu
Kedar Hippalgaonkar
G. Jeffrey Snyder
Jianwei Xu
Qingyu Yan
author_facet Lei Hu
Yue-Wen Fang
Feiyu Qin
Xun Cao
Xiaoxu Zhao
Yubo Luo
Durga Venkata Maheswar Repaka
Wenbo Luo
Ady Suwardi
Thomas Soldi
Umut Aydemir
Yizhong Huang
Zheng Liu
Kedar Hippalgaonkar
G. Jeffrey Snyder
Jianwei Xu
Qingyu Yan
author_sort Lei Hu
title High thermoelectric performance enabled by convergence of nested conduction bands in Pb7Bi4Se13 with low thermal conductivity
title_short High thermoelectric performance enabled by convergence of nested conduction bands in Pb7Bi4Se13 with low thermal conductivity
title_full High thermoelectric performance enabled by convergence of nested conduction bands in Pb7Bi4Se13 with low thermal conductivity
title_fullStr High thermoelectric performance enabled by convergence of nested conduction bands in Pb7Bi4Se13 with low thermal conductivity
title_full_unstemmed High thermoelectric performance enabled by convergence of nested conduction bands in Pb7Bi4Se13 with low thermal conductivity
title_sort high thermoelectric performance enabled by convergence of nested conduction bands in pb7bi4se13 with low thermal conductivity
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/ef0462e36b6f4c3aa55c21999851f87a
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