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Simultaneous Neutron and X-Ray Tomography for ex-situ 3D Visualization of Graphite Anode Degradation in Extremely Fast-Charged Lithium-Ion Batteries

Authors :
Maha Yusuf
Jacob M. LaManna
Partha P. Paul
David N. Agyeman-Budu
Chuntian Cao
Alison R. Dunlop
Andrew N. Jansen
Bryant J. Polzin
Stephen E. Trask
Tanvir R. Tanim
Eric J. Dufek
Vivek Thampy
Hans-Georg Steinrück
Michael F. Toney
Johanna Nelson Weker
Source :
SSRN Electronic Journal.
Publication Year :
2022
Publisher :
Elsevier BV, 2022.

Abstract

Extreme fast charging (XFC) of commercial lithium-ion batteries (LIBs) in ≤10-15 minutes will significantly advance the deployment of electric vehicles globally. However, XFC leads to considerable capacity fade, mainly due to graphite anode degradation. Non-destructive three-dimensional (3D) investigation of XFC-cycled anodes is crucial to connect degradation with capacity loss. Here, we demonstrate the viability of simultaneous neutron and X-ray tomography (NeXT) for ex-situ 3D visualization of graphite anode degradation. NeXT is advantageous because of the sensitivity of neutrons to Li and H and X-rays to Cu. We combine the neutron and X-ray tomography with micron resolution for material identification and segmentation on one pristine and one XFC-cycled graphite anode, thereby underscoring the benefits of the simultaneous nature of NeXT. Our ex-situ results pave the way for the design of NeXT-friendly LIB geometries that will allow operando and/or in-situ 3D visualization of graphite anode degradation during XFC.

Details

ISSN :
15565068
Database :
OpenAIRE
Journal :
SSRN Electronic Journal
Accession number :
edsair.doi.dedup.....3a2073a8569ad445fefc9e8ae2222980