Bivalence Mn5O8 with hydroxylated interphase for high-voltage aqueous sodium-ion storage

Rechargeable aqueous electrochemical energy storage is a promising technology but suffers from a narrow potential window. Here the authors report a surface hydroxylated Mn5O8pseudocapacitor electrode with bivalence structure that expands the potential window to deliver high energy and power performa...

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Autores principales: Xiaoqiang Shan, Daniel S. Charles, Yinkai Lei, Ruimin Qiao, Guofeng Wang, Wanli Yang, Mikhail Feygenson, Dong Su, Xiaowei Teng
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/b59ee57c62ba433393cea63f1f7a35db
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spelling oai:doaj.org-article:b59ee57c62ba433393cea63f1f7a35db2021-12-02T15:35:01ZBivalence Mn5O8 with hydroxylated interphase for high-voltage aqueous sodium-ion storage10.1038/ncomms133702041-1723https://doaj.org/article/b59ee57c62ba433393cea63f1f7a35db2016-11-01T00:00:00Zhttps://doi.org/10.1038/ncomms13370https://doaj.org/toc/2041-1723Rechargeable aqueous electrochemical energy storage is a promising technology but suffers from a narrow potential window. Here the authors report a surface hydroxylated Mn5O8pseudocapacitor electrode with bivalence structure that expands the potential window to deliver high energy and power performance.Xiaoqiang ShanDaniel S. CharlesYinkai LeiRuimin QiaoGuofeng WangWanli YangMikhail FeygensonDong SuXiaowei TengNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-8 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Xiaoqiang Shan
Daniel S. Charles
Yinkai Lei
Ruimin Qiao
Guofeng Wang
Wanli Yang
Mikhail Feygenson
Dong Su
Xiaowei Teng
Bivalence Mn5O8 with hydroxylated interphase for high-voltage aqueous sodium-ion storage
description Rechargeable aqueous electrochemical energy storage is a promising technology but suffers from a narrow potential window. Here the authors report a surface hydroxylated Mn5O8pseudocapacitor electrode with bivalence structure that expands the potential window to deliver high energy and power performance.
format article
author Xiaoqiang Shan
Daniel S. Charles
Yinkai Lei
Ruimin Qiao
Guofeng Wang
Wanli Yang
Mikhail Feygenson
Dong Su
Xiaowei Teng
author_facet Xiaoqiang Shan
Daniel S. Charles
Yinkai Lei
Ruimin Qiao
Guofeng Wang
Wanli Yang
Mikhail Feygenson
Dong Su
Xiaowei Teng
author_sort Xiaoqiang Shan
title Bivalence Mn5O8 with hydroxylated interphase for high-voltage aqueous sodium-ion storage
title_short Bivalence Mn5O8 with hydroxylated interphase for high-voltage aqueous sodium-ion storage
title_full Bivalence Mn5O8 with hydroxylated interphase for high-voltage aqueous sodium-ion storage
title_fullStr Bivalence Mn5O8 with hydroxylated interphase for high-voltage aqueous sodium-ion storage
title_full_unstemmed Bivalence Mn5O8 with hydroxylated interphase for high-voltage aqueous sodium-ion storage
title_sort bivalence mn5o8 with hydroxylated interphase for high-voltage aqueous sodium-ion storage
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/b59ee57c62ba433393cea63f1f7a35db
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AT yinkailei bivalencemn5o8withhydroxylatedinterphaseforhighvoltageaqueoussodiumionstorage
AT ruiminqiao bivalencemn5o8withhydroxylatedinterphaseforhighvoltageaqueoussodiumionstorage
AT guofengwang bivalencemn5o8withhydroxylatedinterphaseforhighvoltageaqueoussodiumionstorage
AT wanliyang bivalencemn5o8withhydroxylatedinterphaseforhighvoltageaqueoussodiumionstorage
AT mikhailfeygenson bivalencemn5o8withhydroxylatedinterphaseforhighvoltageaqueoussodiumionstorage
AT dongsu bivalencemn5o8withhydroxylatedinterphaseforhighvoltageaqueoussodiumionstorage
AT xiaoweiteng bivalencemn5o8withhydroxylatedinterphaseforhighvoltageaqueoussodiumionstorage
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