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Fuel cell and electrolyte membrane therefor 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01M-008/10
출원번호 US-0994343 (1992-12-21)
우선권정보 JP-0342554 (1991-12-25); JP-0167124 (1992-06-25)
발명자 / 주소
  • Nakano Noboru (Tokyo JPX) Azuma Ryuji (Anjo JPX) Nakashima Motohiro (Nishio JPX) Horiguchi Munehisa (Chiryu JPX)
출원인 / 주소
  • Kabushikikaisha Equos Research (Tokyo JPX 03)
인용정보 피인용 횟수 : 56  인용 특허 : 0

초록

The fuel cell disclosed in the present specification is provided with an electrolyte membrane comprising a three-dimensional structure composed of bridged chains of a first polymer stable to water, and a second polymer having a function as an electrolyte. In such an electrolyte membrane, the bridged

대표청구항

A fuel cell comprising: an oxidation agent electrode; a fuel electrode; an electrolyte membrane comprising a three-dimensional structure composed of bridged chains of a first polymer stable to water, and a polyelectrolyte, wherein the said three-dimensional structure and said electrolyte is substant

이 특허를 인용한 특허 (56)

  1. Steck Alfred E.,CAX ; Stone Charles,CAX, .alpha., .beta., .beta.-trifluorostyrene-based composite membranes.
  2. Alfred E. Steck CA; Charles Stone CA, .alpha.,.beta., .beta.-trifluorostyrene-based composite membranes.
  3. Smaling,Rudolf M.; Bromberg,Leslie; Taylor, III,William; Cain,Rodney H.; Daniel,Michael J., Apparatus and method for operating a fuel reformer so as to purge soot therefrom.
  4. Daniel,Michael J.; Bauer,Shawn D., Apparatus and method for operating a fuel reformer to generate multiple reformate gases.
  5. Daniel, Michael J.; Smaling, Rudolf M.; Tyler, Kurt S.; Bauer, Shawn D., Apparatus and method for operating a fuel reformer to provide reformate gas to both a fuel cell and an emission abatement device.
  6. Taylor, III, William; Crane, Jr., Samuel N.; Kong, Yougen, Apparatus and method for operating a fuel reformer to regenerate a DPNR device.
  7. Smaling, Rudolf M.; Daniel, Michael J.; Bauer, Shawn D., Apparatus and method for reducing power consumption of a plasma fuel reformer.
  8. Cisar, Alan; Murphy, Oliver J.; Clarke, Eric, Bifunctional catalytic electrode.
  9. Wallin Sten A. ; Wijeyesekera Sunil D., Cathode composition for solid oxide fuel cell.
  10. Nakashima, Takahiro; Jikihara, Atsushi; Wakui, Takashi; Higa, Mitsuru, Cation exchange membrane and method for producing same.
  11. Taylor, III,William; Tumati,Prasad; Daniel,Michael J., Combination emission abatement assembly and method of operating the same.
  12. Cho,Ju hee; Pak,Chan ho, Composite electrolyte membrane and fuel cell containing the same.
  13. Spethmann Jeffrey E. ; Keating James Thomas, Composite membrane with highly crystalline porous support.
  14. Fan, Qinbai; Le, Siem, Composite polymer electrolyte membrane for polymer electrolyte membrane fuel cells.
  15. Chiao Yi-Hung, Consinterable ceramic interconnect for solid oxide fuel cells.
  16. Chiao Yi-Hung, Cosintering of multilayer stacks of solid oxide fuel cells.
  17. Surampudi,Subbarao; Frank,Harvey A.; Narayanan,Sekharipuram R.; Chun,William; Jeffries Nakamura,Barbara; Kindler,Andrew; Halpert,Gerald, Direct methanol feed fuel cell and system.
  18. Surampudi,Subbarao; Frank,Harvey A.; Narayanan,Sekharipuram R.; Chun,William; Jeffries Nakamura,Barbara; Kindler,Andrew; Halpert,Gerald, Direct methanol feed fuel cell and system.
  19. Surampudi,Subbarao; Frank,Harvey A.; Narayanan,Sekharipuram R.; Chun,William; Jeffries Nakamura,Barbara; Kindler,Andrew; Halpert,Gerald, Direct methanol feed fuel cell and system.
  20. Ren,Xiaoming; Becerra,Juan J.; Hirsch,Robert S.; Gottesfeld,Shimshon; Kovacs,Frank W.; Shufon,Kevin J., Direct oxidation fuel cell operating with direct feed of concentrated fuel under passive water management.
  21. Molter, Trent M.; Shiepe, Jason K.; Speranza, A. John, Electrode catalyst composition, electrode, and membrane electrode assembly for electrochemical cells.
  22. Wallin Sten A., Electrode structure for solid state electrochemical devices.
  23. Nishii, Hiroyuki; Sugitani, Tooru; Yamada, Otoo; Toshikawa, Sakura, Electrolyte membrane for polymer electrolyte fuel cell and method of manufacturing the same.
  24. Leach,David H.; Carlstrom, Jr.,Charles M., Electrostatically actuated shutter and array for use in a direct oxidation fuel cell.
  25. Banerjee Shoibal, Fuel cell incorporating a reinforced membrane.
  26. Adams, Paul; Curello, Andrew J.; Fairbanks, Floyd, Fuel cell supply including information storage device and control system.
  27. Ohlsen, Leroy J.; Cooke, Aaron M.; Mallari, Jonathan C.; Chan, Chung M.; Rice, Gordon L.; Nelson, Craig E., Fuel cells having silicon substrates and/or sol-gel derived support structures.
  28. Fan,Qinbai; Hussain,Hamid, High temperature composite proton exchange membranes.
  29. Sheikh-Ali Bashir Musse ; Wnek Gary Edmund, Ion-conducting membrane for fuel cell.
  30. Luft Guenter (Lauf DEX) Starbeck Gerhard (Nuernberg DEX), Measuring device for determining the concentration of alcohols.
  31. Taylor III, William; Kramer, Dennis A.; Bauer, Shawn D., Method and apparatus for controlling a fuel reformer by use of existing vehicle control signals.
  32. Smaling, Rudolf M., Method and apparatus for purging SOX from a NOX trap.
  33. Wilkinson David P.,CAX ; Johnson Mark C. ; Colbow Kevin M.,CAX ; Campbell Stephen A.,CAX, Method and apparatus for reducing reactant crossover in a liquid feed electrochemical fuel cell.
  34. Wilkinson, David P.; Johnson, Mark C.; Colbow, Kevin M.; Campbell, Stephen A., Method and apparatus for reducing reactant crossover in a liquid feed electrochemical fuel cell.
  35. Telford, Clive D., Method and apparatus for selective catalytic reduction of NOx.
  36. Taylor, III, William; Smaling, Rudolf M.; Bauer, Shawn D., Method and apparatus for shutting down a fuel reformer.
  37. Crane, Jr.,Samuel N.; Taylor, III,William, Method and apparatus for trapping and purging soot from a fuel reformer.
  38. Yamamoto, Tetsu, Method for producing bridged polymer membrane and fuel cell.
  39. Beckmann,Gerhard; Ren,Xiaoming; Mutolo,Paul F.; Kovacs,Frank W.; Gottesfeld,Shimshon, Modified diffusion layer for use in a fuel cell system.
  40. Kim,Hae kyoung, Nanocomposite electrolyte membrane and fuel cell employing the same.
  41. Vamos,Eugene; Surampudi,Subbarao; Narayanan,Sekharipuram R.; Frank,Harvey A.; Halpert,Gerald; Olah,George A.; Prakash,G. K. Surya, Organic fuel cell methods and apparatus.
  42. Ren, Xiaoming; Kovacs, Frank W.; Shufon, Kevin J.; Gottesfeld, Shimshon, Passive water management techniques in direct methanol fuel cells.
  43. Ren,Xiaoming; Kovacs,Frank W.; Shufon,Kevin J.; Gottesfeld,Shimshon, Passive water management techniques in direct methanol fuel cells.
  44. Daniel, Michael J.; Smaling, Rudolf M.; Zwanzig, Kurt D.; Murrah, M. Lee; Bauer, Shawn D., Plasmatron having an air jacket and method for operating the same.
  45. Ohgi, Hiroyuki; Ono, Tomohiro; Nakai, Shinji; Nakano, Takeshi; Kusudou, Takeshi; Fujiwara, Naoki, Polymer electrolyte membrane and process for preparation thereof, and membrane-electrode assembly and polymer electrolyte fuel cell.
  46. Shimoda, Hiroshi; Wakabayashi, Hirokazu, Process for producing membrane-electrode assembly for polymer electrolyte fuel cells.
  47. Sugitani, Tooru; Nishii, Hiroyuki; Shimazu, Akira, Proton-conductive polymer electrolyte membrane, and membrane-electrode assembly and polymer electrolyte fuel cell using the same.
  48. Sugitani, Tooru; Nishii, Hiroyuki; Yamada, Otoo; Toshikawa, Sakura, Proton-conductive polymer electrolyte membrane, method of manufacturing the proton-conductive polymer electrolyte membrane, and membrane-electrode assembly and polymer electrolyte fuel cell using the proton-conductive polymer electrolyte membrane.
  49. Sawa,Haruo, Solid electrolyte and electrochemical system using the solid electrolyte.
  50. Takada Kazunori,JPX ; Iwamoto Kazuya,JPX ; Kondo Shigeo,JPX ; Yasuda Naoshi,JPX ; Masaka Fusazumi,JPX ; Takeuchi Yasumasa,JPX, Solid electrolytic moldings, electrode moldings, and electrochemical elements including a polybutadiene block copolymer.
  51. Chiao Yi-Hung, Solid oxide fuel cells.
  52. Miyashita Tomofumi,JPX ; Seike Satoru,JPX ; Imazawa Chieko,JPX ; Suwahara Hisashi,JPX ; Haba Masanori,JPX, Solid-electrolyte fuel cell.
  53. Wallin Sten A. ; Wijeyesekera Sunil D., Solide oxide fuel cell stack with composite electrodes and method for making.
  54. Steck Alfred E.,CAX ; Stone Charles,CAX, Substituted .alpha.,.beta.,.beta.-trifluorostyrene-based composite membranes.
  55. Akita, Hiroshi; Ichikawa, Masao; Iguchi, Masaru; Oyanagi, Hiroyuki, Sulfonic acid group-containing polyvinyl alcohol, solid polymer electrolyte, composite polymer membrane, method for producing the same and electrode.
  56. Ciray, Mehmet S.; Cain, Rodney H.; Taylor, III, William; Smaling, Rudolf M., Thermoelectric device for use with fuel reformer and associated method.
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