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Laser patterning and electrochemical characterization of thick-film cathodes for lithium-ion batteries

Zhu, Penghui 1; Smyrek, Peter 1; Ebert, Benjamin 1; Pfleging, Wilhelm ORCID iD icon 1
1 Institut für Angewandte Materialien – Angewandte Werkstoffphysik (IAM-AWP), Karlsruher Institut für Technologie (KIT)

Abstract:

Lithium-ion batteries (LIBs) are currently dominating the electrochemical storage sector due to their excellent properties such as high energy density, high power density, and long cycle lifetime. For automotive applications, current research focuses on the merger of two concepts: (i) the “thick film concept” which enables a high energy density due to a reduced amount of inactive materials, and (ii) the “three-dimensional (3D) battery concept”, which provides a high power density with improved interfacial kinetics at mass loadings ≥ 35 mg/cm2. Latter could be realized by applying ultrafast laser patterning of electrodes, which in turn includes an advanced 3D electrode design. Briefly, a rapid and homogeneous electrode wetting with liquid electrolyte can be induced, and besides a high capacity retention during long-term cyclability. Recently, various electrode designs such as line, grid, and hole structures have been reported for cathodes and anodes. However, the mass loss of those electrodes needs to be considered, since the cathode represents about 50 % of the total material costs of LIBs. Thus, the use of electrode structures with a high aspect ratio as well as a significantly reduced material removal is of great importance. ... mehr


Preprint §
DOI: 10.5445/IR/1000157601
Veröffentlicht am 23.05.2023
Cover der Publikation
Zugehörige Institution(en) am KIT Institut für Angewandte Materialien – Angewandte Werkstoffphysik (IAM-AWP)
Publikationstyp Proceedingsbeitrag
Publikationsdatum 17.03.2023
Sprache Englisch
Identifikator ISBN: 978-1-5106-5923-0
ISSN: 0277-786X
KITopen-ID: 1000157601
HGF-Programm 38.02.02 (POF IV, LK 01) Components and Cells
Erschienen in Laser-based Micro- and Nanoprocessing XVII, San Francisco, CA, January 31 - February 2, 2023. Ed.: R. Kling
Veranstaltung SPIE Photonics West LASE (SPIE LASE 2023), San Francisco, CA, USA, 28.01.2023 – 03.02.2023
Verlag Society of Photo-optical Instrumentation Engineers (SPIE)
Seiten Article no: 124090K
Serie Proceedings of SPIE ; 12409
Projektinformation Next-Gen-3DBat (BMBF, 03XP0198F)
Schlagwörter ultrafast laser patterning, lithium-ion battery, thick-film cathode; NMC 622
Nachgewiesen in Scopus
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