DOI

Electrochemical cells using LiFePO4 cathode material are considered one of the safest and most resistant to overcharging among Li-ion batteries. However, if LiFePO4-based electrodes are exposed to high potentials, surface and structural changes may occur in the electrode material. In this study Li/LiFePO4 half-cells were overcharged under different modes with variable cut-off voltages and charge currents. The change in voltage profile, discharge capacity, surface layers composition, and crystalline structure were characterized after overcharge cycles. It was demonstrated that the cathode material is resistant to short-term overcharging up to 5 V, but undergoes irreversible changes with increasing overcharge time or potential. Thus, despite the well-known tolerance of LiFePO4-based batteries to overcharge, a long overcharge time or high cut-off voltage leads to destructive changes in the cathode and should be avoided.

Язык оригиналаанглийский
Номер статьи4652
ЖурналEnergies
Том12
Номер выпуска24
DOI
СостояниеОпубликовано - 7 дек 2019

    Предметные области Scopus

  • Возобновляемые источники энергии и окружающая среда
  • Энергетическая технология
  • Энергия (разное)
  • Теория оптимизации
  • Электротехника и электроника

ID: 50069280