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Cited 13 time in webofscience Cited 13 time in scopus
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Effect of Lithium in Transition Metal Layers of Ni-Rich Cathode Materials on Electrochemical Properties

Authors
Choi, Moon-HoYoon, Chong SeungMyung, Seung-TaekLim, Byung-BeomKomaba, ShinichiSun, Yang Kook
Issue Date
Sep-2015
Publisher
ELECTROCHEMICAL SOC INC
Citation
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, v.162, no.12, pp.A2313 - A2318
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF THE ELECTROCHEMICAL SOCIETY
Volume
162
Number
12
Start Page
A2313
End Page
A2318
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/24865
DOI
10.1149/2.0531512jes
ISSN
0013-4651
Abstract
Li was incorporated into transition metal layers of Ni-rich Li[Ni0.95Co0.05]O-2 by formation of a solid solution with Li2MnO3 (layer notation: Li[Li(0.33)Mu(0.67)]O-2), which can be denoted as (1-x)Li[Ni0.95Co0.05]O-2 - xLi[Li(0.33)Mu(0.67)]O-2, to understand the effect of Li on the structure, electrochemistry and thermal characteristic of the cathode. Structural analysis data obtained by Rietveld refinement of X-ray diffraction data indicate that the additional Li can be found in the transition metal layers of (1-x)Li[Ni0.95Co0.05]O-2 - xLi[Li0.33Mn0.67]O-2. An interesting feature is that the average oxidation states of Ni and Mn are 3+ and 4+, respectively, for (1-x)Li[Ni0.95Co0.05]O-2 - xLi[Li0.33Mn0.67]O-2 as demonstrated by X-ray absorption study. The first discharge capacity was approximately 217 mAh g(-1), and the resulting retention was above 90% for 0.9Li[Ni0.95Co0.05]O-2 - 0.1Li[Li0.3Mn0.67]O-2 (Li[Li0.033Ni0.855Co0.045Mn0.067]O-2) in the range of 2.7 to 4.5 V for 100 cycles, which is a surprising result for Ni-rich compounds. Moreover, the thermal stability of (1-x)Li[Ni0.95Co0.05]O-2 - xLi[Li0.33Mn0.67]O-2 was significantly improved over the cathodes with identical Ni fraction. These results highlight the role of tetravalent Mn ions, even in small amounts, in stabilizing the electrochemical performances and thermal properties in the Ni-rich layer cathodes.
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