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Hybrid lithium-ion capacitor with LiFePO4/AC composite cathode - Long term cycle life study, rate effect and charge sharing analysis

  • A. Shellikeri
  • , S. Yturriaga
  • , J. S. Zheng
  • , W. Cao
  • , M. Hagen
  • , J. A. Read
  • , T. R. Jow
  • , J. P. Zheng
  • Florida State University
  • Florida State University
  • Tongji University
  • General Capacitor LLC
  • U.S. Army Research Laboratory

Research output: Contribution to journalArticlepeer-review

74 Scopus citations

Abstract

Energy storage devices, which can combine the advantages of lithium-ion battery with that of electric double layer capacitor, are of prime interest. Recently, composite cathodes, which combine a battery material with capacitor material, have shown promise in enhancing life cycle and energy/power performances. Lithium-ion capacitor (LIC), with unique charge storage mechanism of combining a pre-lithiated battery anode with a capacitor cathode, is one such device which has the potential to synergistically incorporate the composite cathode to enhance capacity and cycle life. We report here a hybrid LIC consisting of a lithium iron phosphate (LiFePO4-LFP)/Activated Carbon composite cathode in combination with a hard carbon anode, by integrating the cycle life and capacity enhancing strategies of a dry method of electrode fabrication, anode pre-lithiation and a 3:1 anode to cathode capacity ratio, demonstrating a long cycle life, while elaborating on the charge sharing between the faradaic and non-faradaic mechanism in the battery and capacitor materials, respectively in the composite cathode. An excellent cell capacity retention of 94% (1000 cycles at 1C) and 92% (100,000 cycles at 60C) were demonstrated, while retaining 78% (over 6000 cycles at 2.7C) and 67% (over 70,000 cycles at 43C) of the LFP capacity in the composite cathode.

Original languageEnglish
Pages (from-to)285-295
Number of pages11
JournalJournal of Power Sources
Volume392
DOIs
StatePublished - Jul 15 2018

Keywords

  • Composite cathode
  • Hybrid energy storage device
  • Li-ion capacitor
  • Lithium iron phosphate
  • Long cycle life
  • Pre-lithiation

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