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High Temperature Performance of Surface-Treated Li-1.1(Ni0.15Co0.1Mn0.55)O-1.95 Layered Oxide

Authors
Deng, H.Belharouak, I.Yoon, C. S.Sun, Y. -K.Amine, K.
Issue Date
Oct-2010
Publisher
ELECTROCHEMICAL SOC INC
Citation
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, v.157, no.10, pp A1035 - A1039
Indexed
SCI
SCIE
SCOPUS
Journal Title
JOURNAL OF THE ELECTROCHEMICAL SOCIETY
Volume
157
Number
10
Start Page
A1035
End Page
A1039
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/193948
DOI
10.1149/1.3467855
ISSN
0013-4651
1945-7111
Abstract
The electrochemical performance of pristine and AlF3-coated Li1.1Ni0.15Co0.1Mn0.55O1.95 cathodes is reported for cells cycled at 25 and 55 degrees C. In a half-cell configuration, a nanolayer coating of AlF3 on the Li1.1Ni0.15Co0.1Mn0.55O1.95 stabilizes the capacity on cycling. However, in cell tests with metallic lithium anodes, the initial coulombic efficiency decreased slightly at both 25 and 55 degrees C for AlF3-coated Li1.1Ni0.15Co0.1Mn0.55O1.95 in comparison to the pristine material. For cells constructed with graphite instead of lithium anodes, the capacity stability improved with cycling for the coated cathode materials. Transition- metal dissolution was more pronounced for the AlF3-coated sample when stored at 55 degrees C in electrolytes. For both the pristine and AlF3-coated samples, there was no extra capacity loss due to the elevated temperature. Around 10% capacity gain of the cathode materials at elevated temperature is assumed to be due to improved thermodynamic activation.
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