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Lithiation Mechanism of Hierarchically Layered LiNiCoMnO Cathodes during High-Voltage Cycling
Weibo Hua; Björn Schwarz; Michael Knapp; Anatoliy Senyshyn; Alkesandr Missiul; Xiaoke Mu; Suning Wang; Christian Kübel; Joachim R. Binder; Sylvio Indris
刊名Journal of The Electrochemical Society
2019
卷号Vol.166 No.3页码:A5025-A5032
关键词Batteries - Lithium high voltage cycling in situ diffraction structural evolution
ISSN号0013-4651;1945-7111
URL标识查看原文
内容类型期刊论文
URI标识http://www.corc.org.cn/handle/1471x/1822997
专题四川大学
作者单位1.Darmstadt, Germany
2.Institute for Applied Materials , Karlsruhe Institute of Technology ,
3.Karlsruhe Nano Micro Facility , Karlsruhe Institute of Technology ,
4.Technische Universitt Darmstadt, Department of Geo- and Material Science,
5.CELLS-ALBA Synchrotron, Cerdanyola del Valles, E
6.Institute of Nanotechnology , Karlsruhe Institute of Technology ,
7.Garching, Germany
8.Eggenstein-Leopoldshafen, Germany
9.College of Chemical Engineering, Sichuan University, Chengdu, 610065, People's Republic of China
10.Barcelona, Spain
推荐引用方式
GB/T 7714
Weibo Hua,Björn Schwarz,Michael Knapp,et al. Lithiation Mechanism of Hierarchically Layered LiNiCoMnO Cathodes during High-Voltage Cycling[J]. Journal of The Electrochemical Society,2019,Vol.166 No.3:A5025-A5032.
APA Weibo Hua.,Björn Schwarz.,Michael Knapp.,Anatoliy Senyshyn.,Alkesandr Missiul.,...&Helmut Ehrenberg.(2019).Lithiation Mechanism of Hierarchically Layered LiNiCoMnO Cathodes during High-Voltage Cycling.Journal of The Electrochemical Society,Vol.166 No.3,A5025-A5032.
MLA Weibo Hua,et al."Lithiation Mechanism of Hierarchically Layered LiNiCoMnO Cathodes during High-Voltage Cycling".Journal of The Electrochemical Society Vol.166 No.3(2019):A5025-A5032.
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