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Electrochemical cell system with side-by-side arrangement of cells

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01M-008/10
출원번호 US-0093319 (1998-06-08)
발명자 / 주소
  • Bloomfield David P.
  • Banerjee Shoibal
  • Polevaya Olga Y.
  • Ferris James J.
출원인 / 주소
  • E.I. du Pont de Nemours and Company
인용정보 피인용 횟수 : 67  인용 특허 : 8

초록

An electrochemical cell system including an anode compartment and a cathode compartment separated by a membrane and electrode structure. This structure has an anode surface with a plurality of anodes in a side-by-side arrangement exposed to the anode compartment and a cathode surface with a pluralit

대표청구항

[ What is claimed is:] [1.] An electrochemical cell system comprising an anode compartment and a cathode compartment separated by a membrane and electrode structure having a anode surface with a plurality of anodes in a side-by-side arrangement exposed to the anode compartment and a cathode surface

이 특허에 인용된 특허 (8)

  1. Ledjeff Konstantin,DEX ; Nolte Roland,DEX, Battery shaped as a membrane strip containing several cells.
  2. Kendall Kevin (Runcorn GB2), Composite membrarnes and electrochemical cells containing them.
  3. Binder Michael ; Gilman Sol ; Mammone Robert J., Fuel cell including a single sheet of a polymer electrolyte membrane (PEM), the PEM being divided into regions of varyin.
  4. McMichael James W. (Lake Jackson TX), Membrane/electrode combination having interconnected roadways of catalytically active particles.
  5. McMichael James W. (Lake Jackson TX), Method for forming an improved membrane/electrode combination having interconnected roadways of catalytically active par.
  6. McMichael James W. (Lake Jackson TX) Door Robert D. (West Columbia TX), Method for making an improved supported membrane/electrode structure combination wherein catalytically active particles.
  7. Ledjeff Konstantin,DEX ; Nolte Roland,DEX, Polymer electrolyte membrane fuel cell.
  8. McMichael James W. (Lake Jackson TX) Door Robert D. (West Columbia TX), Supported membrane/electrode structure combination wherein catalytically active particles are coated onto the membrane.

이 특허를 인용한 특허 (67)

  1. Iwamoto,Kazuya; Ito,Shuji, All solid state battery with coated substrate.
  2. Schrooten, Jeremy; Petersen, Mark; Iaconis, Jean-Louis; Lo, David, Apparatus and methods for connecting fuel cells to an external circuit.
  3. Schrooten, Jeremy; Petersen, Mark; Iaconis, Jean-Louis; Lo, David; Sobejko, Paul, Apparatus and methods for connecting fuel cells to an external circuit.
  4. McLean,Gerard Francis; Lam,Duhane; Vanderleeden,Olen, Compact chemical reactor.
  5. Lam, Duhane; Vanderleeden, Olen, Compact chemical reactor with reactor frame.
  6. McLean,Gerard Francis; Lam,Duhane; Vanderleeden,Olen, Compact chemical reactor with reactor frame.
  7. McLean,Gerard Francis; Lam,Duhane; Vanderleeden,Olen, Compact fuel cell layer.
  8. Barnett, Scott A.; Lai, Tammy; Liu, Jiang, Direct hydrocarbon fuel cells.
  9. Barnett,Scott A.; Liu,Jiang, Direct hydrocarbon fuel cells.
  10. Scott A. Barnett, Direct hydrocarbon fuel cells.
  11. Spink, Scott A.; Lott, David R.; Fuglevand, William A., Direct liquid fuel cell.
  12. Schrooten, Jeremy; McLean, Gerard F.; Sobejko, Paul, Electrochemical cell and membranes related thereto.
  13. Schrooten, Jeremy; Sobejko, Paul, Electrochemical cell assemblies including a region of discontinuity.
  14. McLean, Gerard F.; Stukas, Anna; Schrooten, Jeremy, Electrochemical cells having current-carrying structures underlying electrochemical reaction layers.
  15. McLean, Gerard F.; Stukas, Anna; Schrooten, Jeremy, Electrochemical cells having current-carrying structures underlying electrochemical reaction layers.
  16. McLean, Gerard F; Stukas, Anna; Schrooten, Jeremy, Electrochemical cells having current-carrying structures underlying electrochemical reaction layers.
  17. McLean, Gerard Francis; Stukas, Anna; Schrooten, Jeremy, Electrochemical cells having current-carrying structures underlying electrochemical reaction layers.
  18. Stucki, Samuel; Schulze, Dirk, Electrolysis cell and method for operating an electrolysis cell.
  19. McLean, Gerard F; Schrooten, Jeremy, Flexible fuel cell structures having external support.
  20. McLean, Gerard Francis; Schrooten, Jeremy, Flexible fuel cell structures having external support.
  21. Iaconis, Jean-Louis; MacDonald, Aaron; Tam, Benjamin, Fluidic interface module for a fuel cell system.
  22. Fukumoto,Hisatoshi; Hiroi,Osamu; Mitsuda,Kenro; Maeda,Hideo; Yoshida,Yasuhiro; Hayashi,Tatsuya; Yoshimura,Akihisa, Fuel cell.
  23. Horiuchi, Michio; Suganuma, Shigeaki; Watanabe, Misa; Tokutake, Yasue, Fuel cell.
  24. Imura, Shinichiro, Fuel cell.
  25. Imura, Shinichiro, Fuel cell.
  26. Imura, Shinichiro; Yasuo, Takashi, Fuel cell and method for connecting current connectors thereto.
  27. Yoshitake,Tsutomu; Kimura,Hidekazu; Manako,Takashi; Yuge,Ryota; Kubo,Yoshimi, Fuel cell and method for manufacturing the same.
  28. Rosenzweig, Alain; Rath, Kurt; Laurent, Jean Yves; Vallon, Bruno; Curello, Andrew J., Fuel cell assembly.
  29. McLean,Gerard Francis; Lam,Duhane; Vanderleeden,Olen, Fuel cell layer with reactor frame.
  30. Fuglevand, William A., Fuel cell power system and method of controlling a fuel cell power system.
  31. Fuglevand,William A., Fuel cell power system and method of controlling a fuel cell power system.
  32. Cisar, Alan J.; Weng, Dacong; Murphy, Oliver J., Fuel cell system for low pressure operation.
  33. Schmitz, Andreas; Hebling, Christopher; Hahn, Robert; Burger, Bruno, Fuel cell system in the form of a printed circuit board.
  34. Schrooten, Jeremy; Sobejko, Paul; McLean, Gerard F, Fuel cell systems including space-saving fluid plenum and related methods.
  35. Schrooten, Jeremy; Sobejko, Paul; McLean, Gerard F, Fuel cell systems including space-saving fluid plenum and related methods.
  36. McLean, Gerard F.; Schrooten, Jeremy; Litster, Shawn, Fuel cell systems with a cover and related methods.
  37. Mardilovich,Peter; Thirukkovalur,Niranjan; Champion,David; Herman,Gregory; O'Neil,James, Fuel cell with embedded current collector.
  38. Gao, Yong, Fuel cell with multiple independent reaction regions.
  39. Schrooten, Jeremy; Sobejko, Paul; McLean, Gerard F., Fuel cells and fuel cell components having asymmetric architecture and methods thereof.
  40. Koschany, Petra, Gas-proof assembly composed of a bipolar plate and a membrane-electrode unit of polymer electrolyte membrane fuel cells.
  41. McLean, Gerard Francis, High power density fuel cell stack using micro structured components.
  42. McLean, Gerard Francis, High power density fuel cell stack using micro structured components.
  43. William A. Fuglevand ; Peter D. DeVries ; Glen Alden Lloyd ; David R. Lott ; John P. Scartozzi, Ion exchange membrane fuel cell.
  44. Capron, Philippe; Rougeaux, Isabelle; Tiquet, Pascal, Ion/electron-conducting composite polymer membrane, manufacturing processes thereof and planar fuel cell core comprising it.
  45. Hong, Ji-Jun; Yum, Duk-Hyung; Moon, Sung-Wook, Lithium secondary battery with high safety and manufacturing method thereof.
  46. Hong,Ji Jun, Lithium secondary cell and method of fabricating the same.
  47. Ji Jun Hong KR, Lithium secondary cell and method of fabricating the same.
  48. Wu, Huey Shen; Martin, Charles W.; Chen, Xin Kang, Low equivalent weight ionomer.
  49. Wu, Huey Shen; Martin, Charles W.; Chen, Xin Kang, Low equivalent weight ionomer.
  50. Wu,Huey Shen; Martin,Charles W.; Chen,Xin Kang, Low equivalent weight ionomer.
  51. McLean, Gerard F.; Ngo, Tran; Djilali, Ned; Stukas, Anna; Schrooten, Jeremy, Membranes and electrochemical cells incorporating such membranes.
  52. McLean,Gerard Francis; Lam,Duhane; Vanderleeden,Olen, Method for forming compact chemical reactors with reactor frames.
  53. McLean,Gerard Francis; Lam,Duhane; Vanderleeden,Olen, Method for making compact chemical reactors.
  54. Hong, Ji Jun, Method for producing lithium secondary battery.
  55. Mizuno, Seiji, Method of manufacturing fuel cells and fuel cells manufactured by the method.
  56. Iaconis, Jean-Louis, Methods for operating a fuel cell system.
  57. Liu, Hong; Fan, Yanzhen, Microbial fuel cell and methods of use.
  58. Cardot, Francis, Miniature fuel cell core.
  59. Choi, Kyoung-hwan, Monopolar cell pack of direct methanol fuel cell.
  60. Pratt Steven D. ; Kelley Ronald J. ; Muthuswamy Sivakumar ; Landreth Bobby Dean ; Pennisi Robert W., Planar fuel cell.
  61. Mosdale,Renaut, Planar fuel cell and method for the production thereof.
  62. Spink, Scott A.; Lott, David R.; Wright, Matthew M.; Yemul, Dinesh S.; Fuglevand, William A.; Bayuuk, Shiblihanna I.; Duan, Runrun; Bai, Lijun, Proton exchange membrane fuel cell.
  63. Spink, Scott A.; Lott, David R.; Wright, Matthew M.; Ryan, Eric J.; Yemul, Dinesh S.; Fisher, John M., Proton exchange membrane fuel cell stack and fuel cell stack module.
  64. Spink, Scott A.; Lott, David R.; Wright, Matthew M.; Ryan, Eric J.; Yemul, Dinesh S.; Fisher, John M., Proton exchange membrane fuel cell stack and fuel cell stack module.
  65. Srinivasan, Rengaswamy; Saffarian, Hassan M.; Raghu, Surya, Scalable all-polymer fuel cell.
  66. Horiuchi, Michio; Suganuma, Shigeaki; Watanabe, Misa; Tokutake, Yasue, Solid electrolyte fuel cell configuration.
  67. Meitav, Arieh; Lang, Joel; Fleischer, Niles; Lifschitz, David; Pecherer, Eugene; Chodesh, Eli Rosh; Manassen, Joost; Rawal, Bharat, Ultra-thin electrochemical energy storage devices.
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