Mutual modulation between surface chemistry and bulk microstructure within secondary particles of nickel-rich layered oxides

The interplay of surface chemistry and bulk microstructure in layered oxides is critical to battery performance. Here, the authors demonstrate a comprehensive understanding of such a reaction mechanism within an individual cathode particle using integrated synchrotron imaging methods.

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Autores principales: Shaofeng Li, Zhisen Jiang, Jiaxiu Han, Zhengrui Xu, Chenxu Wang, Hai Huang, Chang Yu, Sang-Jun Lee, Piero Pianetta, Hendrik Ohldag, Jieshan Qiu, Jun-Sik Lee, Feng Lin, Kejie Zhao, Yijin Liu
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/24e2a42fca7a45bc9b2b1749cd9df632
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spelling oai:doaj.org-article:24e2a42fca7a45bc9b2b1749cd9df6322021-12-02T14:55:15ZMutual modulation between surface chemistry and bulk microstructure within secondary particles of nickel-rich layered oxides10.1038/s41467-020-18278-y2041-1723https://doaj.org/article/24e2a42fca7a45bc9b2b1749cd9df6322020-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-18278-yhttps://doaj.org/toc/2041-1723The interplay of surface chemistry and bulk microstructure in layered oxides is critical to battery performance. Here, the authors demonstrate a comprehensive understanding of such a reaction mechanism within an individual cathode particle using integrated synchrotron imaging methods.Shaofeng LiZhisen JiangJiaxiu HanZhengrui XuChenxu WangHai HuangChang YuSang-Jun LeePiero PianettaHendrik OhldagJieshan QiuJun-Sik LeeFeng LinKejie ZhaoYijin LiuNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Shaofeng Li
Zhisen Jiang
Jiaxiu Han
Zhengrui Xu
Chenxu Wang
Hai Huang
Chang Yu
Sang-Jun Lee
Piero Pianetta
Hendrik Ohldag
Jieshan Qiu
Jun-Sik Lee
Feng Lin
Kejie Zhao
Yijin Liu
Mutual modulation between surface chemistry and bulk microstructure within secondary particles of nickel-rich layered oxides
description The interplay of surface chemistry and bulk microstructure in layered oxides is critical to battery performance. Here, the authors demonstrate a comprehensive understanding of such a reaction mechanism within an individual cathode particle using integrated synchrotron imaging methods.
format article
author Shaofeng Li
Zhisen Jiang
Jiaxiu Han
Zhengrui Xu
Chenxu Wang
Hai Huang
Chang Yu
Sang-Jun Lee
Piero Pianetta
Hendrik Ohldag
Jieshan Qiu
Jun-Sik Lee
Feng Lin
Kejie Zhao
Yijin Liu
author_facet Shaofeng Li
Zhisen Jiang
Jiaxiu Han
Zhengrui Xu
Chenxu Wang
Hai Huang
Chang Yu
Sang-Jun Lee
Piero Pianetta
Hendrik Ohldag
Jieshan Qiu
Jun-Sik Lee
Feng Lin
Kejie Zhao
Yijin Liu
author_sort Shaofeng Li
title Mutual modulation between surface chemistry and bulk microstructure within secondary particles of nickel-rich layered oxides
title_short Mutual modulation between surface chemistry and bulk microstructure within secondary particles of nickel-rich layered oxides
title_full Mutual modulation between surface chemistry and bulk microstructure within secondary particles of nickel-rich layered oxides
title_fullStr Mutual modulation between surface chemistry and bulk microstructure within secondary particles of nickel-rich layered oxides
title_full_unstemmed Mutual modulation between surface chemistry and bulk microstructure within secondary particles of nickel-rich layered oxides
title_sort mutual modulation between surface chemistry and bulk microstructure within secondary particles of nickel-rich layered oxides
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/24e2a42fca7a45bc9b2b1749cd9df632
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