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Strategies to optimize lithium-ion supercapacitors achieving high-performance: Cathode configurations, lithium loadings on anode, and types of separator

  • Wanjun Cao
  • , Yangxing Li
  • , Brian Fitch
  • , Jonathan Shih
  • , Tien Doung
  • , Jim Zheng
  • Florida State University
  • Florida State University
  • FMC Lithium Division
  • United States Department of Energy

Research output: Contribution to journalArticlepeer-review

69 Scopus citations

Abstract

The Li-ion capacitor (LIC) is composed of a lithium-doped carbon anode and an activated carbon cathode, which is a half Li-ion battery (LIB) and a half electrochemical double-layer capacitor (EDLC). LICs can achieve much more energy density than EDLC without sacrificing the high power performance advantage of capacitors over batteries. LIC pouch cells were assembled using activated carbon (AC) cathode and hard carbon (HC) + stabilized lithium metal power (SLMP ®) anode. Different cathode configurations, various SLMP loadings on HC anode, and two types of separators were investigated to achieve the optimal electrochemical performance of the LIC. Firstly, the cathode binders study suggests that the PTFE binder offers improved energy and power performances for LIC in comparison to PVDF. Secondly, the mass ratio of SLMP to HC is at 1:7 to obtain the optimized electrochemical performance for LIC among all the various studied mass ratios between lithium loading amounts and active anode material. Finally, compared to the separator Celgard PP 3501, cellulose based TF40-30 is proven to be a preferred separator for LIC.

Original languageEnglish
Pages (from-to)841-847
Number of pages7
JournalJournal of Power Sources
Volume268
DOIs
StatePublished - Dec 15 2014

Keywords

  • Activated carbon
  • Cathode binder
  • Hard carbon
  • Li-ion capacitor
  • SLMP loadings
  • Types of separator

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