Boron-doped sodium layered oxide for reversible oxygen redox reaction in Na-ion battery cathodes

The irreversible oxygen redox reaction during charging to the high-voltage region causes cathode structural degradation and Na-ion cell capacity fading. Here, the authors report a B-doped cathode active material to mitigate the irreversible oxygen oxidation and increase the cell capacity.

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Autores principales: Yu-Jie Guo, Peng-Fei Wang, Yu-Bin Niu, Xu-Dong Zhang, Qinghao Li, Xiqian Yu, Min Fan, Wan-Ping Chen, Yang Yu, Xiangfeng Liu, Qinghai Meng, Sen Xin, Ya-Xia Yin, Yu-Guo Guo
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/fd2be012ba6847a7aefbe8c17da6650e
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spelling oai:doaj.org-article:fd2be012ba6847a7aefbe8c17da6650e2021-12-02T19:12:27ZBoron-doped sodium layered oxide for reversible oxygen redox reaction in Na-ion battery cathodes10.1038/s41467-021-25610-72041-1723https://doaj.org/article/fd2be012ba6847a7aefbe8c17da6650e2021-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25610-7https://doaj.org/toc/2041-1723The irreversible oxygen redox reaction during charging to the high-voltage region causes cathode structural degradation and Na-ion cell capacity fading. Here, the authors report a B-doped cathode active material to mitigate the irreversible oxygen oxidation and increase the cell capacity.Yu-Jie GuoPeng-Fei WangYu-Bin NiuXu-Dong ZhangQinghao LiXiqian YuMin FanWan-Ping ChenYang YuXiangfeng LiuQinghai MengSen XinYa-Xia YinYu-Guo GuoNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-11 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yu-Jie Guo
Peng-Fei Wang
Yu-Bin Niu
Xu-Dong Zhang
Qinghao Li
Xiqian Yu
Min Fan
Wan-Ping Chen
Yang Yu
Xiangfeng Liu
Qinghai Meng
Sen Xin
Ya-Xia Yin
Yu-Guo Guo
Boron-doped sodium layered oxide for reversible oxygen redox reaction in Na-ion battery cathodes
description The irreversible oxygen redox reaction during charging to the high-voltage region causes cathode structural degradation and Na-ion cell capacity fading. Here, the authors report a B-doped cathode active material to mitigate the irreversible oxygen oxidation and increase the cell capacity.
format article
author Yu-Jie Guo
Peng-Fei Wang
Yu-Bin Niu
Xu-Dong Zhang
Qinghao Li
Xiqian Yu
Min Fan
Wan-Ping Chen
Yang Yu
Xiangfeng Liu
Qinghai Meng
Sen Xin
Ya-Xia Yin
Yu-Guo Guo
author_facet Yu-Jie Guo
Peng-Fei Wang
Yu-Bin Niu
Xu-Dong Zhang
Qinghao Li
Xiqian Yu
Min Fan
Wan-Ping Chen
Yang Yu
Xiangfeng Liu
Qinghai Meng
Sen Xin
Ya-Xia Yin
Yu-Guo Guo
author_sort Yu-Jie Guo
title Boron-doped sodium layered oxide for reversible oxygen redox reaction in Na-ion battery cathodes
title_short Boron-doped sodium layered oxide for reversible oxygen redox reaction in Na-ion battery cathodes
title_full Boron-doped sodium layered oxide for reversible oxygen redox reaction in Na-ion battery cathodes
title_fullStr Boron-doped sodium layered oxide for reversible oxygen redox reaction in Na-ion battery cathodes
title_full_unstemmed Boron-doped sodium layered oxide for reversible oxygen redox reaction in Na-ion battery cathodes
title_sort boron-doped sodium layered oxide for reversible oxygen redox reaction in na-ion battery cathodes
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/fd2be012ba6847a7aefbe8c17da6650e
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AT xiangfengliu borondopedsodiumlayeredoxideforreversibleoxygenredoxreactioninnaionbatterycathodes
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AT yuguoguo borondopedsodiumlayeredoxideforreversibleoxygenredoxreactioninnaionbatterycathodes
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