The transformation of graphite electrode materials in lithium-ion batteries after cycling

Date Published
01/2015
Publication Type
Journal Article
Authors
DOI
10.1016/j.jpowsour.2015.08.055
Abstract

To reveal how graphite electrodes change with cycling in lithium-ion batteries, electrochemical experiments involving charge-discharge cycling at different current density conditions are performed on commercial pouch cells and the graphite electrodes after cycling. This research shows that the polyvinylidene fluoride (PVDF) binder does not degrade, confirmed by the stable molecular weight after different cycling conditions. Particle size analysis results indicate that the diameter of graphite particles after cycling is ∼10% larger than that of the graphite before cycling, which results in a ∼30% volume expansion after cycling. For the cells cycled at the same current density, the graphite particle size increases with cycle time. For the cells with the same cycle numbers, the graphite particle size is larger in the cells cycled at lower current density. X-ray diffraction characterization shows that the d-spacings of the graphite particles in all the cells at different cycling conditions are identical. These results suggest that the graphite particle size increase associated with cycling may arise specifically when primary particles inflate the secondary particle size, leading to dramatic volume expansion of graphite secondary particles.

Journal
Journal of Power Sources
Volume
298
Year of Publication
2015
Pagination
349 - 354
ISSN Number
03787753
Short Title
Journal of Power Sources
Refereed Designation
Refereed
Organizations
Research Areas
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