Unlocking the passivation nature of the cathode–air interfacial reactions in lithium ion batteries

Environmentally triggered degradation at the cathode–air interface is dictated by Li-ion de-intercalation caused by Li+-water interactions. Here, thin disordered rocksalt surface layers are reported to suppress chemical delithiation, facilitating development of high energy and stability cathodes.

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Autores principales: Lianfeng Zou, Yang He, Zhenyu Liu, Haiping Jia, Jian Zhu, Jianming Zheng, Guofeng Wang, Xiaolin Li, Jie Xiao, Jun Liu, Ji-Guang Zhang, Guoying Chen, Chongmin Wang
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/41773f6275c8416caaf4c21085d3c61e
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spelling oai:doaj.org-article:41773f6275c8416caaf4c21085d3c61e2021-12-02T16:06:03ZUnlocking the passivation nature of the cathode–air interfacial reactions in lithium ion batteries10.1038/s41467-020-17050-62041-1723https://doaj.org/article/41773f6275c8416caaf4c21085d3c61e2020-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17050-6https://doaj.org/toc/2041-1723Environmentally triggered degradation at the cathode–air interface is dictated by Li-ion de-intercalation caused by Li+-water interactions. Here, thin disordered rocksalt surface layers are reported to suppress chemical delithiation, facilitating development of high energy and stability cathodes.Lianfeng ZouYang HeZhenyu LiuHaiping JiaJian ZhuJianming ZhengGuofeng WangXiaolin LiJie XiaoJun LiuJi-Guang ZhangGuoying ChenChongmin WangNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-8 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Lianfeng Zou
Yang He
Zhenyu Liu
Haiping Jia
Jian Zhu
Jianming Zheng
Guofeng Wang
Xiaolin Li
Jie Xiao
Jun Liu
Ji-Guang Zhang
Guoying Chen
Chongmin Wang
Unlocking the passivation nature of the cathode–air interfacial reactions in lithium ion batteries
description Environmentally triggered degradation at the cathode–air interface is dictated by Li-ion de-intercalation caused by Li+-water interactions. Here, thin disordered rocksalt surface layers are reported to suppress chemical delithiation, facilitating development of high energy and stability cathodes.
format article
author Lianfeng Zou
Yang He
Zhenyu Liu
Haiping Jia
Jian Zhu
Jianming Zheng
Guofeng Wang
Xiaolin Li
Jie Xiao
Jun Liu
Ji-Guang Zhang
Guoying Chen
Chongmin Wang
author_facet Lianfeng Zou
Yang He
Zhenyu Liu
Haiping Jia
Jian Zhu
Jianming Zheng
Guofeng Wang
Xiaolin Li
Jie Xiao
Jun Liu
Ji-Guang Zhang
Guoying Chen
Chongmin Wang
author_sort Lianfeng Zou
title Unlocking the passivation nature of the cathode–air interfacial reactions in lithium ion batteries
title_short Unlocking the passivation nature of the cathode–air interfacial reactions in lithium ion batteries
title_full Unlocking the passivation nature of the cathode–air interfacial reactions in lithium ion batteries
title_fullStr Unlocking the passivation nature of the cathode–air interfacial reactions in lithium ion batteries
title_full_unstemmed Unlocking the passivation nature of the cathode–air interfacial reactions in lithium ion batteries
title_sort unlocking the passivation nature of the cathode–air interfacial reactions in lithium ion batteries
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/41773f6275c8416caaf4c21085d3c61e
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