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Thermal runaway of commercial 18650 Li-ion batteries with LFP and NCA cathodes – impact of state of charge and overcharge

RSC Advances · 2015 · Vol. 5(70) · pp. 57171–57186
Andrey W. GolubkovSebastian ScheiklRené PlanteuGernot VoiticHelmar WiltscheChristoph StanglGisela FaulerAlexander ThalerViktor Hacker

Abstract

Destructive thermal ramp experiments with commercial Li-ion batteries at different state of charge were made. Produced gases were quantified and a causing chemical reaction system is proposed.

Advanced Battery Technologies ResearchAdvancements in Battery MaterialsAdvanced Battery Materials and TechnologiesOverchargeThermal runawayState of chargeIonCharge (physics)CathodeState (computer science)Materials scienceThermalNuclear engineering

Funding

  • TU Graz, Internationale Beziehungen und Mobilitätsprogramme
  • Bundesministerium für Wissenschaft, Forschung und Wirtschaft
  • Österreichische Forschungsförderungsgesellschaft
  • Bundesministerium für Verkehr, Innovation und Technologie
  • Steirische Wirtschaftsförderungsgesellschaft
  • Amt der Steiermärkischen Landesregierung
Citations
529
FWCI
14.02
field-weighted impact
References
80
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99%
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Cited by
The lithium-ion battery: State of the art and future perspectives
Renewable and Sustainable Energy Reviews · 2018 · 2,415 citations
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