Journalartikel

Energy Storage Materials for Solid-State Batteries: Design by Mechanochemistry


AutorenlisteSchlem, Roman; Burmeister, Christine Friederike; Michalowski, Peter; Ohno, Saneyuki; Dewald, Georg F.; Kwade, Arno; Zeier, Wolfgang G.

Jahr der Veröffentlichung2021

ZeitschriftAdvanced Energy Materials

Bandnummer11

Heftnummer30

ISSN1614-6832

eISSN1614-6840

DOI Linkhttps://doi.org/10.1002/aenm.202101022

VerlagWiley


Abstract
Commercialization of solid-state batteries requires the upscaling of the material syntheses as well as the mixing of electrode composites containing the solid electrolyte, cathode active materials, binders, and conductive additives. Inspired by recent literature about the tremendous influence of the employed milling and dispersing procedure on the resulting ionic transport properties of solid ionic conductors and the general performance of all solid-state batteries, in this review, the underlying physical and mechanochemical processes that influence this processing are discussed. By discussing and combining the theoretical backgrounds of mechanical milling with regard to mechanochemical synthesis and dispersing of particles together with a wide range of examples, a better understanding of the critical parameters attached to mechanical milling of solid electrolytes and solid-state battery components is provided.



Zitierstile

Harvard-ZitierstilSchlem, R., Burmeister, C., Michalowski, P., Ohno, S., Dewald, G., Kwade, A., et al. (2021) Energy Storage Materials for Solid-State Batteries: Design by Mechanochemistry, Advanced Energy Materials, 11(30), Article 2101022. https://doi.org/10.1002/aenm.202101022

APA-ZitierstilSchlem, R., Burmeister, C., Michalowski, P., Ohno, S., Dewald, G., Kwade, A., & Zeier, W. (2021). Energy Storage Materials for Solid-State Batteries: Design by Mechanochemistry. Advanced Energy Materials. 11(30), Article 2101022. https://doi.org/10.1002/aenm.202101022



Schlagwörter


LI2S-P2S5 GLASSESPHASE-TRANSITIONPLANETARY BALL MILLSprocessingPROCESS OPTIMIZATIONSTIRRED MEDIA


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