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Polymer material for electrolytic membranes in fuel cells 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01M-008/10
  • H01M-008/22
  • C08J-005/18
출원번호 US-5618991 (1995-11-22)
발명자 / 주소
  • Yen Shaio-Ping S.
  • Narayanan Sekharipuram R.
  • Halpert Gerald
  • Graham Eva
  • Yavrouian Andre
출원인 / 주소
  • California Institute of Technology
대리인 / 주소
    Fish & Richardson P.C.
인용정보 피인용 횟수 : 83  인용 특허 : 4

초록

A polymer, PEEK or SPES is processed to use it as a proton conducting membrane for a fuel cell. Asymmetric properties are formed.

대표청구항

[ What is claimed:] [1.] A method of processing a polymer to enhance its proton conducting characteristics, comprising:

이 특허에 인용된 특허 (4)

  1. Surampudi Subbarao (Glendora CA) Narayanan Sekharipuram R. (Altadena CA) Vamos Eugene (La Canada CA) Frank Harvey A. (Encino CA) Halpert Gerald (Pasadena CA) Olah George A. (Beverly Hills CA) Prakash, Aqueous liquid feed organic fuel cell using solid polymer electrolyte membrane.
  2. Ehrenberg Scott G. (Fishkill NY) Serpico Joseph (Troy NY) Wnek Gary E. (Latham NY) Rider Jeffrey N. (Troy NY), Fuel cell incorporating novel ion-conducting membrane.
  3. Sterzel Hans-Josef (Dannstadt-Schauernheim DEX) Sanner Axel (Frankenthal DEX), Membranes of substantially non-crosslinked organic polymers which contain bonded ionogenic groups.
  4. Sluma Heinz-Dieter (Grossostheim DEX) Huff Dieter (Obernburg DEX), Method for sulfonating aromatic polyether sulfones.

이 특허를 인용한 특허 (83)

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  4. Onodera, Toru; Sasaki, Shigeru; Yashiki, Daizaburo, Block copolymers and use thereof.
  5. Yandrasits,Michael A.; Hamrock,Steven J.; Hintzer,Klaus; Thaler,Arne; Fukushi,Tatsuo; Jing,Naiyong; Lochhaas,Kai Helmut, Bromine, chlorine or iodine functional polymer electrolytes crosslinked by e-beam.
  6. Devine, John Neil; Wilson, Brian, Cells.
  7. Cho,Ju hee; Pak,Chan ho, Composite electrolyte membrane and fuel cell containing the same.
  8. Kaliaguine, Serge; Mikhailenko, Sergei; Zaidi, S. M. Javak, Composite electrolyte membranes for fuel cells and methods of making same.
  9. Kurano, Matthew Robert; Panambur, Gangadhar; Mada Kannan, Arunachala Nadar; Taft, III, Karl Milton, Composite electrolyte with crosslinking agents.
  10. Schnurnberger, Werner; Kerres, Jochen; Cui, Wei, Cross-linking of modified engineering thermoplastics.
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  12. Jing,Naiyong; Hamrock,Steven J., Crosslinked polymer.
  13. Gharib, Morteza; Rinderknecht, Derek; Gharib, Mostafa, Device and method for treating hydrocephalus.
  14. Surampudi,Subbarao; Frank,Harvey A.; Narayanan,Sekharipuram R.; Chun,William; Jeffries Nakamura,Barbara; Kindler,Andrew; Halpert,Gerald, Direct methanol feed fuel cell and system.
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  17. Dweik,Badawi M.; Forchione,John W.; Manoukian,Mourad; Kosek,John A.; LaConti,Anthony B.; Evans,David A., Electrochemical-electrolytic capacitor and method of making the same.
  18. Adams,Paul, Fuel cartridge for fuel cells.
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  22. Blankenship George D., Fuel cell operated welder.
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  26. Kindler Andrew ; Yen Shiao-Ping, HSPES membrane electrode assembly.
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  29. Cao,Shuguang; Xu,Helen; Jeanes,Thomas; Nam,Kie Hyun; Chen,Jian Ping, Ion conductive block copolymers.
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  31. Lockley,John Edward; Wilson,Brian, Ion-conducting polymeric materials.
  32. Chamock, Peter; Kemmish, David J.; Staniland, Philip A.; Wilson, Brian, Ion-exchange polymers.
  33. Charnock, Peter; Kemmish, David J.; Staniland, Philip A.; Wilson, Brian, Ion-exchange polymers.
  34. Zhang Jiujun,CAX ; Colbow Kevin M.,CAX ; Wilkinson David P.,CAX, Ionomer impregnation of electrode substrates for improved fuel cell performance.
  35. Litt,Morton H.; Granados Focil,Sergio, Liquid crystal poly(phenylene sulfonic acids).
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  38. DeFilippis, Michael S., Method and apparatus for water management of a fuel cell system.
  39. Gottesfeld, Shimson, Methods and apparatuses for a pressure driven fuel cell system.
  40. Beckmann, Gerhard; Brown, Eric J., Methods and apparatuses for a self-regulating gas displacement pump for a fuel cell system.
  41. Corey, John A.; Beckmann, Gerhard, Methods and apparatuses for managing effluent products in a fuel cell system.
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  45. Saunders, James H.; Markworth, Alan J.; Markworth, legal representative, Caroline M.; Glenn, Bradley C.; Hindin, Barry, Methods of removing contaminants from a fuel cell electrode.
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  47. Rajendran Govindarajulu, Multiple layer membranes for fuel cells employing direct feed fuels.
  48. Kim,Hae kyoung, Nanocomposite electrolyte membrane and fuel cell employing the same.
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  66. Jing,Naiyong; Hamrock,Steven J.; Yandrasits,Michael A., Polymer electrolytes crosslinked by ultraviolet radiation.
  67. Kim,Hae kyoung; Lee,Jae sung; Rhee,Chang houn; Chang,Hyuk, Polymer nanocomposite membrane and fuel cell using the same.
  68. Wang, Chuanfu; Dong, Junqing, Polymers for proton exchange membranes, proton exchange membranes, and their fabrication methods.
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  76. Chen, Jong Pyng; Chen, Jen Luan; Shih, Chih Jer; Chen, Chih Yuan, Structures of the proton exchange membranes with different molecular permeabilities.
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  79. Fuller, Timothy J.; Dobulis, Beba T., Sulfonated poly(phenylene sulfide) films as polyelectrolyte membranes.
  80. Wang, Chuanfu; Dong, Junqing, Type of fuel cell battery.
  81. Narayanan,Sekharipuram R.; Yen,Shiao Pin S., Water free proton conducting membranes based on poly-4-vinylpyridinebisulfate for fuel cells.
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