Cross-linked beta alumina nanowires with compact gel polymer electrolyte coating for ultra-stable sodium metal battery

Here the authors show a beta alumina nanowires/gel polymer composite electrolyte design. The dense and homogeneous solid-liquid hybrid sodium-ion transportation channels promote uniform sodium deposition and stripping and significantly improve the performance of a Na metal battery.

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Autores principales: Danni Lei, Yan-Bing He, Huijuan Huang, Yifei Yuan, Guiming Zhong, Qiang Zhao, Xiaoge Hao, Danfeng Zhang, Chen Lai, Siwei Zhang, Jiabin Ma, Yinping Wei, Qipeng Yu, Wei Lv, Yan Yu, Baohua Li, Quan-Hong Yang, Yong Yang, Jun Lu, Feiyu Kang
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/070396b68efb4c80a3ef2c65367c89cf
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spelling oai:doaj.org-article:070396b68efb4c80a3ef2c65367c89cf2021-12-02T14:39:19ZCross-linked beta alumina nanowires with compact gel polymer electrolyte coating for ultra-stable sodium metal battery10.1038/s41467-019-11960-w2041-1723https://doaj.org/article/070396b68efb4c80a3ef2c65367c89cf2019-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-11960-whttps://doaj.org/toc/2041-1723Here the authors show a beta alumina nanowires/gel polymer composite electrolyte design. The dense and homogeneous solid-liquid hybrid sodium-ion transportation channels promote uniform sodium deposition and stripping and significantly improve the performance of a Na metal battery.Danni LeiYan-Bing HeHuijuan HuangYifei YuanGuiming ZhongQiang ZhaoXiaoge HaoDanfeng ZhangChen LaiSiwei ZhangJiabin MaYinping WeiQipeng YuWei LvYan YuBaohua LiQuan-Hong YangYong YangJun LuFeiyu KangNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-11 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Danni Lei
Yan-Bing He
Huijuan Huang
Yifei Yuan
Guiming Zhong
Qiang Zhao
Xiaoge Hao
Danfeng Zhang
Chen Lai
Siwei Zhang
Jiabin Ma
Yinping Wei
Qipeng Yu
Wei Lv
Yan Yu
Baohua Li
Quan-Hong Yang
Yong Yang
Jun Lu
Feiyu Kang
Cross-linked beta alumina nanowires with compact gel polymer electrolyte coating for ultra-stable sodium metal battery
description Here the authors show a beta alumina nanowires/gel polymer composite electrolyte design. The dense and homogeneous solid-liquid hybrid sodium-ion transportation channels promote uniform sodium deposition and stripping and significantly improve the performance of a Na metal battery.
format article
author Danni Lei
Yan-Bing He
Huijuan Huang
Yifei Yuan
Guiming Zhong
Qiang Zhao
Xiaoge Hao
Danfeng Zhang
Chen Lai
Siwei Zhang
Jiabin Ma
Yinping Wei
Qipeng Yu
Wei Lv
Yan Yu
Baohua Li
Quan-Hong Yang
Yong Yang
Jun Lu
Feiyu Kang
author_facet Danni Lei
Yan-Bing He
Huijuan Huang
Yifei Yuan
Guiming Zhong
Qiang Zhao
Xiaoge Hao
Danfeng Zhang
Chen Lai
Siwei Zhang
Jiabin Ma
Yinping Wei
Qipeng Yu
Wei Lv
Yan Yu
Baohua Li
Quan-Hong Yang
Yong Yang
Jun Lu
Feiyu Kang
author_sort Danni Lei
title Cross-linked beta alumina nanowires with compact gel polymer electrolyte coating for ultra-stable sodium metal battery
title_short Cross-linked beta alumina nanowires with compact gel polymer electrolyte coating for ultra-stable sodium metal battery
title_full Cross-linked beta alumina nanowires with compact gel polymer electrolyte coating for ultra-stable sodium metal battery
title_fullStr Cross-linked beta alumina nanowires with compact gel polymer electrolyte coating for ultra-stable sodium metal battery
title_full_unstemmed Cross-linked beta alumina nanowires with compact gel polymer electrolyte coating for ultra-stable sodium metal battery
title_sort cross-linked beta alumina nanowires with compact gel polymer electrolyte coating for ultra-stable sodium metal battery
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/070396b68efb4c80a3ef2c65367c89cf
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