Structural water and disordered structure promote aqueous sodium-ion energy storage in sodium-birnessite

The authors report a sodium rich disordered birnessite cathode material Na0.27MnO2 for aqueous Na-ion storage. The impressive electrochemical performance is attributed to the co-deintercalation of structural water and Na-ion during the high potential charging process which stabilizes the layered str...

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Autores principales: Xiaoqiang Shan, Fenghua Guo, Daniel S. Charles, Zachary Lebens-Higgins, Sara Abdel Razek, Jinpeng Wu, Wenqian Xu, Wanli Yang, Katharine L. Page, Joerg C. Neuefeind, Mikhail Feygenson, Louis F. J. Piper, Xiaowei Teng
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/5692b005599c4d73b905fac2c0d8335e
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spelling oai:doaj.org-article:5692b005599c4d73b905fac2c0d8335e2021-12-02T15:35:31ZStructural water and disordered structure promote aqueous sodium-ion energy storage in sodium-birnessite10.1038/s41467-019-12939-32041-1723https://doaj.org/article/5692b005599c4d73b905fac2c0d8335e2019-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12939-3https://doaj.org/toc/2041-1723The authors report a sodium rich disordered birnessite cathode material Na0.27MnO2 for aqueous Na-ion storage. The impressive electrochemical performance is attributed to the co-deintercalation of structural water and Na-ion during the high potential charging process which stabilizes the layered structure.Xiaoqiang ShanFenghua GuoDaniel S. CharlesZachary Lebens-HigginsSara Abdel RazekJinpeng WuWenqian XuWanli YangKatharine L. PageJoerg C. NeuefeindMikhail FeygensonLouis F. J. PiperXiaowei TengNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-11 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Xiaoqiang Shan
Fenghua Guo
Daniel S. Charles
Zachary Lebens-Higgins
Sara Abdel Razek
Jinpeng Wu
Wenqian Xu
Wanli Yang
Katharine L. Page
Joerg C. Neuefeind
Mikhail Feygenson
Louis F. J. Piper
Xiaowei Teng
Structural water and disordered structure promote aqueous sodium-ion energy storage in sodium-birnessite
description The authors report a sodium rich disordered birnessite cathode material Na0.27MnO2 for aqueous Na-ion storage. The impressive electrochemical performance is attributed to the co-deintercalation of structural water and Na-ion during the high potential charging process which stabilizes the layered structure.
format article
author Xiaoqiang Shan
Fenghua Guo
Daniel S. Charles
Zachary Lebens-Higgins
Sara Abdel Razek
Jinpeng Wu
Wenqian Xu
Wanli Yang
Katharine L. Page
Joerg C. Neuefeind
Mikhail Feygenson
Louis F. J. Piper
Xiaowei Teng
author_facet Xiaoqiang Shan
Fenghua Guo
Daniel S. Charles
Zachary Lebens-Higgins
Sara Abdel Razek
Jinpeng Wu
Wenqian Xu
Wanli Yang
Katharine L. Page
Joerg C. Neuefeind
Mikhail Feygenson
Louis F. J. Piper
Xiaowei Teng
author_sort Xiaoqiang Shan
title Structural water and disordered structure promote aqueous sodium-ion energy storage in sodium-birnessite
title_short Structural water and disordered structure promote aqueous sodium-ion energy storage in sodium-birnessite
title_full Structural water and disordered structure promote aqueous sodium-ion energy storage in sodium-birnessite
title_fullStr Structural water and disordered structure promote aqueous sodium-ion energy storage in sodium-birnessite
title_full_unstemmed Structural water and disordered structure promote aqueous sodium-ion energy storage in sodium-birnessite
title_sort structural water and disordered structure promote aqueous sodium-ion energy storage in sodium-birnessite
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/5692b005599c4d73b905fac2c0d8335e
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