Titelangaben
Rank, Philipp ; Müllner, Sebastian ; Gerdes, Thorsten ; Roth, Christina:
Thermally Robust and Highly Wettable Polyethylene Separators for Lithium-Metal Batteries Using Water-Based Processing of a Glass Platelet Coating.
In: Batteries.
Bd. 12
(2026)
Heft 9
.
- 347.
ISSN 2313-0105
DOI: https://doi.org/10.3390/batteries12090347
Angaben zu Projekten
| Projekttitel: |
Offizieller Projekttitel Projekt-ID GlasSeLIB – Glas-Separatoren für Lithium-Ionen-Batterien AZ-1463-20 Open Access Publizieren Ohne Angabe |
|---|---|
| Projektfinanzierung: |
Bayerische Forschungsstiftung |
Abstract
Commercial polyolefin separators for lithium-ion batteries (LIBs) exhibit only inadequate wettability and thermal stability. In large-scale production, high electrolyte uptake and wetting are essential to enable rapid electrolyte filling during battery assembly to reduce costs. In addition, it is imperative to develop separators with enhanced thermal stability for improved performance and safety. The focus of this study is the structure–property–performance relationship of separator coatings. Platelet-shaped glass particles are utilized as inorganic coating material for polyethylene (PE) separators. Styrene–butadiene rubber (SBR) was selected as binder due to its high thermal stability. Hybrid separators are prepared using a colloidal coating technology employing a water-based slurry. As the excessive use of binder in the coating can block pores, precise control of the binder content was essential to maintain battery performance. The resulting separators with an optimized binder content of 1 wt. in the coating demonstrate high porosity, instantaneous wetting with electrolyte, and a 25 K increase in onset temperature for shrinkage. The utilization of glass platelets with an aspect ratio of 10 as coating material provided the best balance among processability, coating homogeneity, thermal stability, ionic conductivity, and cycling performance under the investigated processing conditions.
Weitere Angaben
| Publikationsform: | Artikel in einer Zeitschrift |
|---|---|
| Begutachteter Beitrag: | Ja |
| Keywords: | lithium-metal batteries; separator; inorganic coating; wettability; glass particles; safety features |
| Institutionen der Universität: | Fakultäten > Fakultät für Ingenieurwissenschaften > Lehrstuhl Werkstoffverfahrenstechnik > Lehrstuhl Werkstoffverfahrenstechnik - Univ.-Prof. Dr.-Ing. Christina Roth Forschungseinrichtungen > Zentrale wissenschaftliche Einrichtungen > Bayerisches Zentrum für Batterietechnik - BayBatt Forschungseinrichtungen > Forschungsstellen > Keylab Glastechnologie |
| Titel an der UBT entstanden: | Ja |
| Themengebiete aus DDC: | 500 Naturwissenschaften und Mathematik > 540 Chemie 600 Technik, Medizin, angewandte Wissenschaften > 620 Ingenieurwissenschaften |
| Eingestellt am: | 07 Okt 2026 05:37 |
| Letzte Änderung: | 07 Okt 2026 05:37 |
| URI: | https://eref.uni-bayreuth.de/id/eprint/99624 |

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