LAPSE:2023.30600
Published Article
LAPSE:2023.30600
Achieving High-Performance Spherical Natural Graphite Anode through a Modified Carbon Coating for Lithium-Ion Batteries
Hae-Jun Kwon, Sang-Wook Woo, Yong-Ju Lee, Je-Young Kim, Sung-Man Lee
April 14, 2023
Abstract
The electrochemical performance of modified natural graphite (MNG) and artificial graphite (AG) was investigated as a function of electrode density ranging from 1.55 to 1.7 g∙cm−3. The best performance was obtained at 1.55 g∙cm−3 and 1.60 g∙cm−3 for the AG and MNG electrodes, respectively. Both AG, at a density of 1.55 g∙cm−3, and MNG, at a density of 1.60 g∙cm−3, showed quite similar performance with regard to cycling stability and coulombic efficiency during cycling at 30 and 45 °C, while the MNG electrodes at a density of 1.60 g∙cm−3 and 1.7 g∙cm−3 showed better rate performance than the AG electrodes at a density of 1.55 g∙cm−3. The superior rate capability of MNG electrodes can be explained by the following effects: first, their spherical morphology and higher electrode density led to enhanced electrical conductivity. Second, for the MNG sample, favorable electrode tortuosity was retained and thus Li+ transport in the electrode pore was not significantly affected, even at high electrode densities of 1.60 g∙cm−3 and 1.7 g∙cm−3. MNG electrodes also exhibited a similar electrochemical swelling behavior to the AG electrodes.
Keywords
artificial graphite, electrochemical performance, Li-ion battery, natural graphite, negative electrode material
Subject
Suggested Citation
Kwon HJ, Woo SW, Lee YJ, Kim JY, Lee SM. Achieving High-Performance Spherical Natural Graphite Anode through a Modified Carbon Coating for Lithium-Ion Batteries. (2023). LAPSE:2023.30600
Author Affiliations
Kwon HJ: Department of Materials Science & Engineering, Kangwon National University, 1 Gangwondaehakgil, Chuncheon-Si 24341, Korea
Woo SW: R&D Campus, LG Energy Solution, 188 Munji-ro, Yuseong-gu, Dae-jeon-Si 34122, Korea
Lee YJ: R&D Campus, LG Energy Solution, 188 Munji-ro, Yuseong-gu, Dae-jeon-Si 34122, Korea
Kim JY: R&D Campus, LG Energy Solution, 188 Munji-ro, Yuseong-gu, Dae-jeon-Si 34122, Korea
Lee SM: Department of Materials Science & Engineering, Kangwon National University, 1 Gangwondaehakgil, Chuncheon-Si 24341, Korea
Journal Name
Energies
Volume
14
Issue
7
First Page
1946
Year
2021
Publication Date
2021-04-01
ISSN
1996-1073
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Original Submission
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PII: en14071946, Publication Type: Journal Article
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LAPSE:2023.30600
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https://doi.org/10.3390/en14071946
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