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Method for intercalating alkali metal ions into carbon electrodes 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01M-006/18
  • H01M-004/62
출원번호 US-0055709 (1993-05-03)
발명자 / 주소
  • Doeff Marca M. (Hayward CA) Ma Yanping (Berkeley CA) Visco Steven J. (Berkeley CA) DeJonghe Lutgard (Lafayette CA)
출원인 / 주소
  • Regents, University of California (Berkeley CA 02)
인용정보 피인용 횟수 : 25  인용 특허 : 0

초록

A low cost, relatively flexible, carbon electrode for use in a secondary battery is described. A method is provided for producing same, including intercalating alkali metal salts such as sodium and lithium into carbon.

대표청구항

A method for intercalating metal ions into carbon for use as an electrode in a secondary cell comprising the steps of: a) Admixing a carbon powder, an ion conducting polymer, a powder of an alkali metal salt, and a powder of a carbon dispersant, b) Mixing together the resulting dry combination with

이 특허를 인용한 특허 (25)

  1. Gauthier Michel,CAX ; Bouchard Patrick,CAX ; Guerin Paul-Emile,CAX ; Armand Michel,FRX, Additives for lubricating agents used in the lamination of lithium sheets into thin films.
  2. Masarapu, Charan; Anguchamy, Yogesh Kumar; Han, Yongbong; Deng, Haixia; Kumar, Sujeet; Lopez, Herman A., Battery designs with high capacity anode materials and cathode materials.
  3. Olson John B., Battery paste compositions and electrochemical cells for use therewith.
  4. Petersen, Ralph A.; Henning, Ross A., Battery paste material and method.
  5. Patric Jannasch SE; Anna-Karin Hjelm SE, Binder and/or electrolyte material.
  6. Keller Harald,DEX ; Bronstert Bernd,DEX ; Steininger Helmut,DEX ; Heil Gunter,DEX ; Blum Rainer,DEX, Electrode materials suitable for lithium-ion electrochemical cells.
  7. MacKenzie, John Devin; Ho, Christine Chihfan; Yogeeswaran, Karthik; Cheng, Po-Jen, Electrolytic doping of non-electrolyte layers in printed batteries.
  8. MacKenzie, John Devin; Ho, Christine Chihfan; Yogeeswaran, Karthik; Cheng, Po-Jen, Electrolytic doping of non-electrolyte layers in printed batteries.
  9. Lopez, Herman A.; Anguchamy, Yogesh Kumar; Deng, Haixia; Han, Yongbong; Masarapu, Charan; Venkatachalam, Subramanian; Kumar, Sujeet, High capacity anode materials for lithium ion batteries.
  10. Lopez, Herman A.; Anguchamy, Yogesh Kumar; Deng, Haixia; Han, Yongbong; Masarapu, Charan; Venkatachalam, Subramanian; Kumar, Sujeet, High capacity anode materials for lithium ion batteries.
  11. Amiruddin, Shabab; Venkatachalam, Subramanian; Li, Bing; Lopez, Herman A.; Kumar, Sujeet, Lithium ion batteries with supplemental lithium.
  12. Amiruddin, Shabab; Venkatachalam, Subramanian; Li, Bing; Lopez, Herman A.; Kumar, Sujeet, Lithium ion batteries with supplemental lithium.
  13. Kobayashi, Koutaro; Koishikawa, Yoshimasa; Hironaka, Kensuke, Lithium secondary battery.
  14. Nazri Gholam-Abbas ; Howie Blake James, Method of making a cell using a lithium-deactivated carbon anode.
  15. Nishimura Naoto,JPX ; Mitate Takehito,JPX ; Yoneda Tetsuya,JPX ; Yamada Kazuo,JPX, Non-aqueous secondary battery and negative electrode for non-aqueous secondary battery.
  16. Marshall C. Smart ; Ratnakumar V. Bugga ; Subbarao Surampudi ; Chen-Kuo Huang, Organic solvents, electrolytes, and lithium ion cells with good low temperature performance.
  17. Anguchamy, Yogesh Kumar; Masarapu, Charan; Deng, Haixia; Han, Yongbong; Venkatachalam, Subramanian; Kumar, Sujeet; Lopez, Herman A., Porous silicon based anode material formed using metal reduction.
  18. Hasegawa Masaki (Hirakata JPX) Bito Yasuhiko (Osaka Prefecture JPX) Ito Shuji (Akashi JPX) Murata Toshihide (Izumiotsu JPX) Toyoguchi Yoshinori (Yao JPX), Positive electrode for non-aqueous electrolyte lithium secondary battery and method of manufacturing the same.
  19. Flores Lira, Ricardo; Garza de La Garza, Sanjuana, Production of tetrabasic lead sulfate from solid state reactions for the preparation of active plates to be used in lead-acid batteries.
  20. Flores Lira, Ricardo; Garza de La Garza, Sanjuana, Production of tetrabasic lead sulfate from solid state reactions for the preparation of active plates to be used in lead-acid batteries.
  21. Flores Lira,Ricardo; Garza De La Garza,Sanjuana, Production of tetrabasic lead sulfate from solid state reactions for the preparation of active plates to be used in lead-acid batteries.
  22. Flores Lira,Ricardo; Garza de La Garza,Sanjuana, Production of tetrabasic lead sulfate from solid state reactions for the preparation of active plates to be used in lead-acid batteries.
  23. Flores Lira,Ricardo; Garza de La Garza,Sanjuana, Production of tetrabasic lead sulfate from solid state reactions for the preparation of active plates to be used in lead-acid batteries.
  24. Deng, Haixia; Han, Yongbong; Masarapu, Charan; Anguchamy, Yogesh Kumar; Lopez, Herman A.; Kumar, Sujeet, Silicon oxide based high capacity anode materials for lithium ion batteries.
  25. Sharma Pramod K. ; Narayanan Sekharipuram R. ; Hickey Gregory S., Thermally regenerative battery with intercalatable electrodes and selective heating means.
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