In Situ XAFS Study of LiNi0.5Mn0.5O2 Cathode for Li Rechargeable Batteries.
Author:
Affiliation:
1. Toyota Central R&D Labs., Inc.
Publisher
Ceramic Society of Japan
Subject
Materials Chemistry,Condensed Matter Physics,General Chemistry,Ceramics and Composites
Link
http://www.jstage.jst.go.jp/article/jcersj/111/1289/111_1289_33/_pdf
Reference14 articles.
1. Rechargeable LiNiO2 / Carbon Cells
2. Electrochemistry and Structural Chemistry of LiNiO2 (R3m) for 4 Volt Secondary Lithium Cells
3. Crystal structure study of LiNi1−xMnxO2
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1. Electrochemical reaction mechanism of two components in xLi2MnO3–(1–x)LiNi0.5Mn0.5O2 and effect of x on the electrochemical performance in lithium ion battery;Journal of Electroanalytical Chemistry;2020-09
2. Crystal and electronic structure change determined by various method for delithiation process of Lix(Ni,Mn)O2-based cathode material;Journal of Power Sources;2011-08
3. The Influence of Heat-Treatment Temperature on the Cation Distribution of LiNi[sub 0.5]Mn[sub 0.5]O[sub 2] and Its Rate Capability in Lithium Rechargeable Batteries;Journal of The Electrochemical Society;2011
4. Local structure and composition studies of Li1.2Ni0.2Mn0.6O2 by analytical electron microscopy;Journal of Power Sources;2008-03
5. Changes in the Cation Ordering of Layered O3 LixNi0.5Mn0.5O2 during Electrochemical Cycling to High Voltages: An Electron Diffraction Study;Chemistry of Materials;2007-04-20
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