$TiS_2$ Composite/SPE/Li Cell의 충방전에 따른 AC 임피던스의 변화

Variation of AC Impedance of the $TiS_2$ Composite/SPE/Li Cell with Cycling

  • 김종욱 (한국전기연구소 전기재료연구부 전지기술연구팀) ;
  • 구할본 (전남대학교 전기공학과) ;
  • 문성인 (한국전기연구소 전기재료연구부 전지기술연구팀) ;
  • 윤문수 (한국전기연구소 전기재료연구부 전지기술연구팀)
  • Kim, J.U. (Battery Technology Team, Korea Electrotechnology Research Institute) ;
  • Gu, H.B. (Dept. of Electrical Eng., Chonnam National University) ;
  • Moon, S.I. (Battery Technology Team, Korea Electrotechnology Research Institute) ;
  • Yun, M.S. (Battery Technology Team, Korea Electrotechnology Research Institute)
  • 발행 : 1995.07.20

초록

The purpose of this study is to research and develop $TiS_2$ composite cathode for lithium polymer battery(LPB). $TiS_2$ electrode represent a class of insertion positive electrode used in Li secondary batteries. In this study, we investigated preparation of $TiS_2$ composite cathode and AC impedance response of $TiS_2$ composite/SPE/Li cells as a function of state of charge(SOC) and cycling. The resistance of B type cell using $TiS_2PEO_8LiClO_4PC_5EC_5$ composite cathode was lower than that of A type cell using $TiS_2PEO$ composite cathode. The cell resistance of B type cell is high for the first few percent discharge, decreases for midium discharge and then increases again toward the end of discharge. We believe the magnitude of the cell resistance is dominated by passivation layer impedance and small cathode resistance. AC impedance results indicate that the cell internal resistance increase with cycling, and this is attributed to change of passivation layer impedance with cycling. The passivation layer resistance($R_f$) of B type cell decreases for the 2nd cycling and then increases again with cycling. Redox coulombic efficiency of B type cell was about 141% at 1st cycle and 100% at 12th cycle. Also, $TiS_2$ specific capacity was 115 mAh/g at 12 cycle.

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