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Thermal-runaway experiments on consumer Li-ion batteries with metal-oxide and olivin-type cathodes

RSC Advances · 2013 · Vol. 4(7) · pp. 3633–3642
Andrey W. GolubkovDavid FuchsJulian WagnerHelmar WiltscheChristoph StanglGisela FaulerGernot VoiticAlexander ThalerViktor Hacker

Abstract

Li-ion batteries play an ever-increasing role in our daily life. Therefore, it is important to understand the potential risks involved with these devices. In this work we demonstrate the thermal runaway characteristics of three types of commercially available Li-ion batteries with the format 18650. The Li-ion batteries were deliberately driven into thermal runaway by overheating under controlled conditions. Cell temperatures up to 850 °C and a gas release of up to 0.27 mol were measured. The main gas components were quantified with gas-chromatography. The safety of Li-ion batteries is determined by their composition, size, energy content, design and quality. This work investigated the influence of different cathode-material chemistry on the safety of commercial graphite-based 18650 cells. The active cathode materials of the three tested cell types were (a) LiFePO4, (b) Li(Ni0.45Mn0.45Co0.10)O2 and (c) a blend of LiCoO2 and Li(Ni0.50Mn0.25Co0.25)O2.

Advancements in Battery MaterialsAdvanced Battery Technologies ResearchAdvanced Battery Materials and TechnologiesThermal runawayCathodeOverheating (electricity)GraphiteMaterials scienceOxideIonThermalChemical engineeringNuclear engineering

Funding

  • TU Graz, Internationale Beziehungen und Mobilitätsprogramme
  • Austrian Federal Ministry of Economy, Family and Youth
  • Österreichische Forschungsförderungsgesellschaft
  • Bundesministerium für Verkehr, Innovation und Technologie
  • Steirische Wirtschaftsförderungsgesellschaft
  • Amt der Steiermärkischen Landesregierung
Citations
844
FWCI
10.10
field-weighted impact
References
48
Percentile
99%
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Citations per year
References
Abuse behavior of high-power, lithium-ion cells
Journal of Power Sources · 2002 · 1,285 citations
Phospho‐olivines as Positive‐Electrode Materials for Rechargeable Lithium Batteries
Journal of The Electrochemical Society · 1997 · 7,705 citations
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