Strain engineering of two-dimensional multilayered heterostructures for beyond-lithium-based rechargeable batteries

Beyond-Li+-ion batteries are promising energy storage systems but suffer from lack of suitable electrode materials. Here the authors report a new type of zero-strain cathodes for Na+, K+, Zn2+, and Al3+ ion batteries through strain engineering of a 2D multilayered VOPO4-graphene heterostructure.

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Autores principales: Pan Xiong, Fan Zhang, Xiuyun Zhang, Shijian Wang, Hao Liu, Bing Sun, Jinqiang Zhang, Yi Sun, Renzhi Ma, Yoshio Bando, Cuifeng Zhou, Zongwen Liu, Takayoshi Sasaki, Guoxiu Wang
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/ff7d4cc20c6e469cb74d371410ea7219
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spelling oai:doaj.org-article:ff7d4cc20c6e469cb74d371410ea72192021-12-02T16:10:52ZStrain engineering of two-dimensional multilayered heterostructures for beyond-lithium-based rechargeable batteries10.1038/s41467-020-17014-w2041-1723https://doaj.org/article/ff7d4cc20c6e469cb74d371410ea72192020-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17014-whttps://doaj.org/toc/2041-1723Beyond-Li+-ion batteries are promising energy storage systems but suffer from lack of suitable electrode materials. Here the authors report a new type of zero-strain cathodes for Na+, K+, Zn2+, and Al3+ ion batteries through strain engineering of a 2D multilayered VOPO4-graphene heterostructure.Pan XiongFan ZhangXiuyun ZhangShijian WangHao LiuBing SunJinqiang ZhangYi SunRenzhi MaYoshio BandoCuifeng ZhouZongwen LiuTakayoshi SasakiGuoxiu WangNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-12 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Pan Xiong
Fan Zhang
Xiuyun Zhang
Shijian Wang
Hao Liu
Bing Sun
Jinqiang Zhang
Yi Sun
Renzhi Ma
Yoshio Bando
Cuifeng Zhou
Zongwen Liu
Takayoshi Sasaki
Guoxiu Wang
Strain engineering of two-dimensional multilayered heterostructures for beyond-lithium-based rechargeable batteries
description Beyond-Li+-ion batteries are promising energy storage systems but suffer from lack of suitable electrode materials. Here the authors report a new type of zero-strain cathodes for Na+, K+, Zn2+, and Al3+ ion batteries through strain engineering of a 2D multilayered VOPO4-graphene heterostructure.
format article
author Pan Xiong
Fan Zhang
Xiuyun Zhang
Shijian Wang
Hao Liu
Bing Sun
Jinqiang Zhang
Yi Sun
Renzhi Ma
Yoshio Bando
Cuifeng Zhou
Zongwen Liu
Takayoshi Sasaki
Guoxiu Wang
author_facet Pan Xiong
Fan Zhang
Xiuyun Zhang
Shijian Wang
Hao Liu
Bing Sun
Jinqiang Zhang
Yi Sun
Renzhi Ma
Yoshio Bando
Cuifeng Zhou
Zongwen Liu
Takayoshi Sasaki
Guoxiu Wang
author_sort Pan Xiong
title Strain engineering of two-dimensional multilayered heterostructures for beyond-lithium-based rechargeable batteries
title_short Strain engineering of two-dimensional multilayered heterostructures for beyond-lithium-based rechargeable batteries
title_full Strain engineering of two-dimensional multilayered heterostructures for beyond-lithium-based rechargeable batteries
title_fullStr Strain engineering of two-dimensional multilayered heterostructures for beyond-lithium-based rechargeable batteries
title_full_unstemmed Strain engineering of two-dimensional multilayered heterostructures for beyond-lithium-based rechargeable batteries
title_sort strain engineering of two-dimensional multilayered heterostructures for beyond-lithium-based rechargeable batteries
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/ff7d4cc20c6e469cb74d371410ea7219
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