Sie befinden Sich nicht im Netzwerk der Universität Paderborn. Der Zugriff auf elektronische Ressourcen ist gegebenenfalls nur via VPN oder Shibboleth (DFN-AAI) möglich. mehr Informationen...
Ergebnis 15 von 759

Details

Autor(en) / Beteiligte
Titel
Direct measurements of size-independent lithium diffusion and reaction times in individual polycrystalline battery particles
Ist Teil von
  • Energy & environmental science, 2023-09, Vol.16 (9), p.3847-3859
Ort / Verlag
Cambridge: Royal Society of Chemistry
Erscheinungsjahr
2023
Quelle
Alma/SFX Local Collection
Beschreibungen/Notizen
  • Polycrystalline Li(Ni,Mn,Co)O 2 (NMC) secondary particles are the most common cathode materials for Li-ion batteries. During electrochemical (dis)charge, lithium is believed to diffuse through the bulk and enter (leave) the secondary particle at the surface. Based on this model, smaller particles would cycle faster due to shorter diffusion lengths and larger surface-area-to-volume ratios. In this work, we evaluate this widespread assumption by developing a new high-throughput single-particle electrochemistry platform using the multi-electrode array from neuroscience. By measuring the reaction and diffusion times for 21 individual particles in liquid electrolytes, we find no correlation between the particle size and either the reaction or diffusion times, which is in stark contrast to the prevailing lithium transport model. We propose that electrochemical reactions occur inside secondary particles, likely due to electrolyte penetration into cracks. Our high-throughput, single-particle electrochemical platform further opens new frontiers for robust, statistical quantification of individual particles in electrochemical systems. A newly developed single-particle electrochemistry platform conducted on NMC cathodes for Li-ion batteries shows that smaller particles do not have faster charging and discharge rates than larger ones.
Sprache
Englisch
Identifikatoren
ISSN: 1754-5692
eISSN: 1754-5706
DOI: 10.1039/d3ee00953j
Titel-ID: cdi_crossref_primary_10_1039_D3EE00953J

Weiterführende Literatur

Empfehlungen zum selben Thema automatisch vorgeschlagen von bX