Nova Patents
EP1559165A2

Improved energy devices

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 23 October 2023, 2.9 years ago.

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119 claims: 17 independent, 102 dependent

  1. 1
    Claims of equivalent WO 2004038886 A2 . __- What is Claimed is:1. A membrane electrode assembly comprising at least an anode, a cathode and a membrane separating said anode and said cathode, wherein at least one of said anode and said cathode comprises electrocatalyst particles fabricated by heating suspended droplets of an electrocatalyst precursor composition while said droplets are suspended in a gas.
  2. 2
    A membrane electrode assembly as recited in Claim 1 , wherein said electrocatalyst particles are composite electrocatalyst aggregates comprising a support phase and an active species phase dispersed on said support phase.
  3. 3
    A membrane electrode assembly as recited in Claim 1 , wherein said electrocatalyst particles are composite electrocatalyst aggregates comprising a support phase and a platinum metal phase dispersed on said support phase.
  4. 4
    A membrane electrode assembly as recited in Claim 1 , wherein said heating step comprises heating said suspended droplets in a spray- dryer.
  5. 5
    A membrane electrode assembly as recited in Claim 1 , wherein said heating step comprises heating said suspended droplets in a mixed-flow spray-dryer.
  6. 6
    A membrane electrode assembly as recited in Claim 1 , wherein said heating step comprises heating to a temperature of not greater than about 400°C.
  7. 7
    A membrane electrode assembly as recited in Claim 1 , wherein said heating step comprises heating to a temperature of not greater than about 300°C.
  8. 8
    A membrane electrode assembly as recited in Claim 1 , wherein said heating step comprises heating for not greater than about 600 seconds.
  9. 9
    A membrane electrode assembly as recited in Claim 1 , wherein said heating step comprises heating for not greater than about 100 seconds.
  10. 10
    A membrane electrode assembly as recited in Claim 1 , wherein said electrocatalyst particles have a volume average particle size of not greater than about 30 μm.
  11. 11
    A membrane electrode assembly as recited in Claim 1 , wherein said electrocatalyst particles comprise an active species phase dispersed on a support phase and wherein said support phase comprises primary carbon particles having an average primary particle size of from about 10 to about 100 nanometers.
  12. 12
    A membrane electrode assembly comprising at least an anode, a cathode and a membrane separating said anode and cathode, wherein at least one of said anode and cathode comprises composite electrocatalyst aggregates having an active species dispersed on a support phase wherein said aggregates are substantially spherical and wherein the volume average size of said aggregates is not greater than about 100 μm.
  13. 13
    A membrane electrode assembly as recited in Claim 12, wherein said electrocatalyst aggregates have a volume average size of not greater than about 20 μm.
  14. 14
    A membrane electrode assembly as recited in Claim 12, wherein said composite electrocatalyst aggregates comprise a support phase of primary carbon particles and an active species phase dispersed on said primary carbon particles.
  15. 15
    A membrane electrode assembly as recited in Claim 12, wherein said electrocatalyst aggregates are dispersed in an electrocatalyst layer having an average thickness of not greater than about 50 μm.
  16. 16
    A membrane electrode assembly comprising at least an anode, a cathode and a membrane separating said anode and said cathode, wherein at least one of said anode and said cathode comprises an electrocatalyst layer and said electrocatalyst layer comprises substantially spherical electrocatalyst particles.
  17. 17
    A membrane electrode assembly as recited in Claim 16, wherein said electrocatalyst particles have a volume average particle size of not greater than about 20 μm.
  18. 18
    A membrane electrode assembly as recited in Claim 16, wherein said electrocatalyst particles have a volume average particle size of not greater than about 10 μm.
  19. 19
    A membrane electrode assembly as recited in Claim 16, wherein at least about 5 volume percent of said electrocatalyst layer comprises said spherical electrocatalyst particles.
  20. 20
    A membrane electrode assembly as recited in Claim 16, wherein at least about 10 volume percent of said electrocatalyst layer comprises said spherical electrocatalyst particles.
  21. 21
    A membrane electrode assembly as recited in Claim 16, wherein at least about 20 volume percent of said electrocatalyst layer comprises said spherical electrocatalyst particles. .
  22. 22
    A membrane electrode assembly as recited in Claim 16, wherein said electrocatalyst particles are composite electrocatalyst particles comprising an active species phase dispersed on a support phase.
  23. 23
    A membrane electrode assembly as recited in Claim 16, wherein said electrocatalyst particles are composite particles comprising a platinum-containing metal dispersed on a carbon support.
  24. 24
    A liquid vehicle comprising catalyst particles, said liquid vehicle being adapted to be deposited using a direct-write tool to form a catalyst layer, wherein said liquid vehicle comprises a liquid carrier and catalyst particles having a volume average particle size of not greater than about 20 μm dispersed in said liquid carrier.
  25. 25
    A liquid vehicle as recited in Claim 24, wherein said volume average particle size is from about 1 μm to about 10 μm.
  26. 26
    A liquid vehicle as recited in Claim 24, wherein said catalyst particles are substantially spherical.
  27. 27
    A liquid vehicle as recited in Claim 24, wherein said catalyst particles are electrocatalyst particles.
  28. 28
    A liquid vehicle as recited in Claim 27, wherein said electrocatalyst particles are secondary particles comprising an active species phase dispersed on primary support particles.
  29. 29
    A liquid vehicle as recited in Claim 27, wherein said electrocatalyst particles are secondary particles comprising an active species phase dispersed on primary carbon support particles having an average primary particle size of from about 10 nanometers to about 1000 nanometers.
  30. 30
    A liquid vehicle as recited in Claim 27, wherein said electrocatalyst particles are secondary particles comprising an active species phase dispersed on primary carbon support particles having an average primary particle size of from about 10 nanometers to about 100 nanometers.
  31. 31
    A liquid vehicle as recited in Claim 27, wherein said electrocatalyst comprises a platinum metal active species phase dispersed on primary carbon support particles.
  32. 32
    A liquid vehicle as recited in Claim 27, wherein said electrocatalyst comprises MnO x active species phase dispersed on primary carbon support particles.
  33. 33
    A liquid vehicle as recited in Claim 27, wherein said liquid vehicle comprises a solvent and a binder. . . _
  34. 34
    A method for the deposition of an electrocatalyst layer, comprising the steps of:a) dispersing electrocatalyst particles in a liquid carrier to form a liquid vehicle, wherein said electrocatalyst particles have a volume average particle size of not greater than about 20 μm;b) depositing said liquid vehicle onto a surface using a direct- write tool;and c) heating said liquid vehicle to a temperature sufficient to form an electrocatalyst layer.
  35. 35
    A method as recited in Claim 34, wherein said volume average particle size is from about 1 μm to about 10 μm.
  36. 36
    A method as recited in Claim 34, wherein said electrocatalyst particles are substantially spherical.
  37. 37
    A method as recited in Claim 34, wherein said electrocatalyst particles are secondary particles comprising an active species phase dispersed on primary support particles.
  38. 38
    A method as recited in Claim 34, wherein said electrocatalyst particles are secondary particles comprising an active species phase dispersed on primary carbon support particles having an average primary particle size of from about 10 nanometers to about 100 nanometers.
  39. 39
    A method as recited in Claim 34, wherein said electrocatalyst comprises a platinum metal active species phase dispersed on primary carbons support particles.
  40. 40
    A method as recited in Claim 34, wherein said electrocatalyst comprises MnO x active species phase dispersed on primary carbon support particles.
  41. 41
    A method as recited in Claim 34, wherein said temperature is at least about 200°C.
  42. 42
    A method as recited in Claim 34, wherein said liquid vehicle comprises a solvent and a binder.
  43. 43
    A membrane electrode assembly comprising at least an anode, a cathode and a membrane separating said anode and said cathode, wherein at least one of said anode and said cathode comprises electrocatalyst aggregates , said electrocatalyst aggregates comprising an active species phase dispersed on a porous support phase and a polymer phase intimately mixed within the structure of said aggregates .
  44. 44
    A membrane electrode assembly as recited in Claim 43, wherein said polymer phase comprises a proton conductive polymer. . . ,- ,
  45. 45
    A membrane electrode assembly as recited in Claim 43, wherein said polymer phase comprises a hydrophobic polymer.
  46. 46
    A membrane electrode assembly as recited in Claim 43, wherein said polymer phase comprises a hydrophilic polymer.
  47. 47
    A membrane electrode assembly as recited in Claim 43, wherein said polymer phase comprises a fluorocarbon polymer.
  48. 48
    A membrane electrode assembly as recited in Claim 43, wherein said polymer phase comprises a perfluorohydrocarbon polymer.
  49. 49
    A membrane electrode assembly as recited in Claim 43, wherein said electrocatalyst particles comprise primary carbon support particles.
  50. 50
    A membrane electrode assembly as recited in Claim 43, wherein said electrocatalyst particles comprise primary carbon support particles having an average primary particle size of from about 10 nanometers to about 100 nanometers.
  51. 51
    A membrane electrode assembly as recited in Claim 43, wherein said electrocatalyst aggregates are substantially spherical.
  52. 52
    A membrane electrode assembly as recited in Claim 43, wherein said electrocatalyst particles are aggregates with volume average particle size from about 1 μm to about 50 μm.
  53. 53
    A membrane electrode assembly comprising at least an anode, a cathode and a membrane separating said anode and said cathode, wherein at least one of said anode and said cathode comprises electrocatalyst particles consisting of an active species phase dispersed on a support phase and wherein said electrocatalyst particles have an average internal pore size of not greater than about 20 nanometers.
  54. 54
    A membrane electrode assembly as recited in Claim 53, wherein said electrocatalyst particles have an average internal pore size of not greater than about 15 nanometers.
  55. 55
    A membrane electrode assembly as in Claim 53, wherein said electrocatalyst particles have an open porosity of at least about 40 percent.
  56. 56
    A membrane electrode assembly as recited in Claim 53, wherein said electrocatalyst particles comprise an active species phase dispersed on a support phase, said support phase comprising primary carbon support particles.
  57. 57
    A membrane electrode assembly comprising an electrocatalyst layer, wherein said layer comprises 20 to 40 volume percent electrocatalyst, 20 to 40 volume percent proton conducting polymer and at least about 30 volume percent porosity.
  58. 58
    A membrane electrode assembly as recited in Claim 57, wherein said electrocatalyst layer has an average thickness of not greater 50 μm.
  59. 59
    A membrane electrode assembly as recited in Claim 57, wherein said electrocatalyst layer has an average thickness of not greater than about 25 μm.
  60. 60
    A membrane electrode assembly as recited in Claim 57, where at least 60% of the volume percent porosity is derived from porosity between aggregates.
  61. 61
    A membrane electrode assembly comprising an anode, a cathode and a membrane separating said anode and said cathode, wherein said cathode comprises an electrocatalyst layer having a supported active species loading of not greater than about 0.2 mg/cm 2 , and wherein the cell voltage of said membrane electrode assembly is at least about 0.6 V at a constant current density of about 600 mA/cm 2 at 50°C and atmospheric pressure, using a feed gas of pure air to said cathode and pure hydrogen to said anode at a substantially constant flow rate and with external humidification.
  62. 62
    A membrane electrode assembly as recited in Claim 61 , wherein said reference voltage decreases in average by not more than about 7.5 μ-volts per hour when said membrane electrode assembly is run for a continuous period of about 4000 hours at 50°C and atmospheric pressure with a feed gas of pure air to said cathode and a feed gas of pure hydrogen to said anode at a substantially constant flow rate and with external humidification.
  63. 63
    A membrane electrode assembly as recited in Claim 61 , wherein said supported active species comprises platinum.
  64. 64
    A membrane electrode assembly as recited in Claim 61 , wherein said supported active species consists essentially of platinum.
  65. 65
    A membrane electrode assembly as recited in Claim 61 using a feed gas of pure air to said cathode (2.2 stoichiometry) and pure hydrogen to said anode (1 .2 stoichiometry) with substantially constant flow rates corresponding to current density of 1 A/cm 2 and with 100% external humidification of the gases. .
  66. 66
    A membrane electrode assembly comprising an anode, a cathode and a membrane separating said anode and said cathode, wherein said cathode comprises an electrocatalyst layer having a supported active species loading of not greater than about 0.1 mg/cm 2 , wherein said membrane electrode assembly has a cell voltage of at least about 0.7 V at a current density of at least about 150 mA/cm 2 at 50°C and atmospheric pressure, using a feed gas of pure air to said cathode and pure hydrogen to said anode at a substantially constant flow rate and with external humidification.
  67. 67
    A membrane electrode assembly as recited in Claim 66, wherein said current density is at least about 200 mA/cm 2 .
  68. 68
    A membrane electrode assembly as recited in Claim 66, wherein said current density is at least about 250 mA/cm 2 .
  69. 69
    A membrane electrode assembly as recited in Claim 66, wherein said membrane electrode assembly has a cell voltage of at least about 0.5 V at a current density of at least about 550 mA/cm 2 .
  70. 70
    A membrane electrode assembly as recited in Claim 66, wherein said membrane electrode assembly has a cell voltage of at least about 0.5 V at a current density of at least about 600 mA/cm 2 .
  71. 71
    A membrane electrode assembly as recited in Claim 66, wherein said supported active species comprises platinum.
  72. 72
    A membrane electrode assembly as recited in Claim 66, wherein said supported active species consists essentially of platinum.
  73. 73
    A membrane electrode assembly as recited in Claim 66 using a feed gas of pure air to said cathode (2.2 stoichiometry) and pure hydrogen to said anode (1.2 stoichiometry) with substantially constant flow rates corresponding to current density of 1A/cm 2 and with 100% external humidification of the gases.
  74. 74
    A membrane electrode assembly comprising an anode, a cathode and a membrane separating said anode and said cathode, wherein said cathode comprises an electrocatalyst layer having a supported active species loading of not greater than about 0.2 mg /cm 2 , and wherein said membrane electrode assembly has a cell voltage of at least about 0.6 V at a current density of at least about 550 mA/cm 2 at 50°C and atmospheric pressure, using a feed gas of pure air to said cathode and pure hydrogen to said anode at a substantially constant flow rate and with external humidification. . -
  75. 75
    A membrane electrode assembly as recited in Claim 74, wherein said current density is at least about 600 mA/cm 2 .
  76. 76
    A membrane electrode assembly as recited in Claim 74, wherein said current density is at least about 650 mA/cm 2 .
  77. 77
    A membrane electrode assembly as recited in Claim 74, wherein said supported active species comprises platinum.
  78. 78
    A membrane electrode assembly as recited in Claim 74, wherein said supported active species consists essentially of platinum.
  79. 79
    A membrane electrode assembly as recited in Claim 74 using a feed gas of pure air to said cathode (2.2 stoichiometry) and pure hydrogen to said anode (1.2 stoichiometry) with substantially constant flow rates corresponding to current density of 1 A/cm 2 and 100% external humidification of the gases.
  80. 80
    A membrane electrode assembly comprising an anode, a cathode, and a membrane separating said anode and said cathode, wherein said cathode comprises an electrocatalyst layer having a supported active species loading of not greater than about 0.4 mg/cm 2 , and wherein said membrane electrode assembly has a cell voltage of at least about 0.5 V at a current density of at least about 800 mA/cm 2 at 50°C and atmospheric pressure, using a feed gas of pure air to said cathode and pure hydrogen to said anode at a substantially constant flow rate and with external humidification.
  81. 81
    A membrane electrode assembly as recited in Claim 80, wherein said membrane electrode assembly has a cell voltage of at least about 0.5 V at a current density of at least 850 mA/cm 2 .
  82. 82
    A membrane electrode assembly as recited in Claim 80, wherein said membrane electrode assembly has a cell voltage of at least about 0.5 V at a current density of at least 900 mA/cm 2 .
  83. 83
    A membrane electrode assembly as recited in Claim 80, wherein said membrane electrode assembly has a cell voltage of at least about 0.5 V at a current density of at least 1000 mA/cm 2 .
  84. 84
    A membrane electrode assembly as recited in Claim 80, wherein said supported active species comprises platinum.
  85. 85
    A membrane electrode assembly as recited in Claim 80, wherein said supported active species consists essentially of platinum.
  86. 86
    A membrane electrode assembly as recited in Claim 80 using a feed gas of pure air to said cathode (2.2 stoichiometry) and pure hydrogen to said anode (1.2 stoichiometry) with substantially constant flow rates corresponding to current density of 1 A/cm 2 and 100% external humidification of the gases.
  87. 87
    A membrane electrode assembly comprising an anode, a cathode, and a membrane separating said anode and said cathode, wherein said cathode comprises an electrocatalyst layer having a supported active species loading of not greater than about 0.5 mg/cm 2 , and wherein said membrane electrode assembly has a cell voltage of at least about 0.5 V at a current density of at least about 800 mA/cm 2 at 50°C and atmospheric pressure, using a feed gas of pure air to said cathode and pure hydrogen to said anode at a substantially constant flow rate and with external humidification.
  88. 88
    A membrane electrode assembly as recited in Claim 87, wherein said membrane electrode assembly has a cell voltage of at least about 0.5 V at a current density of at least 850 mA/cm 2 .
  89. 89
    A membrane electrode assembly as recited in Claim 87, wherein said membrane electrode assembly has a cell voltage of at least about 0.5 V at a current density of at least 900 mA/cm 2 .
  90. 90
    A membrane electrode assembly as recited in Claim 87, wherein said membrane electrode assembly has a cell voltage of at least about 0.5 V at a current density of at least 1000 mA/cm 2 .
  91. 91
    A membrane electrode assembly as recited in Claim 87, wherein said supported active species comprises platinum.
  92. 92
    A membrane electrode assembly as recited in Claim 87, wherein said supported active species consists essentially of platinum.
  93. 93
    A membrane electrode assembly as recited in Claim 87 using a feed gas of pure air to said cathode (2.2 stoichiometry) and pure hydrogen to said anode (1.2 stoichiometry) with substantially constant flow rates corresponding to current density of 1 A/cm 2 and 100% external humidification of the gases.
  94. 94
    A membrane electrode assembly comprising an anode, a cathode, and a membrane separating said anode and said cathode, wherein said cathode comprises an electrocatalyst layer having a supported active species loading of not greater than about 0.1 mg/cm 2 and has a delta E value of not greater than about 50 millivolts at 200 mA/cm 2 and not greater than about 100 millivolts at 400 mA/cm 2 and not greater than about 175 millivolts at 600 mA/cm 2 , when measured at 50°C and atmospheric pressure, using a feed gas of pure hydrogen to said anode at a substantially constant flow rate and with external humidification.
  95. 95
    A membrane electrode assembly as recited in Claim 94, wherein said supported active species comprises platinum.
  96. 96
    A membrane electrode assembly as recited in Claim 94, wherein said supported active species consists essentially of platinum.
  97. 97
    A membrane electrode assembly as recited in Claim 94, wherein said electrocatalyst layer comprises electrocatalyst particles having a supported active species dispersed on a support structure, said support structure having a porosity of at least about 40 percent.
  98. 98
    A membrane electrode assembly as recited in Claim 94, which has a cell voltage of at least 0.6 V at 400 mA/cm 2 when measured in air.
  99. 99
    A membrane electrode assembly as recited in Claim 94, wherein said electrocatalyst layer comprises supported electrocatalyst particles having a platinum loading that is not greater than about 5 weight percent.
  100. 100
    A membrane electrode assembly as recited in Claim 94 using a feed gas of pure air to said cathode (2.2 stoichiometry) and pure hydrogen to said anode (1 .2 stoichiometry) with substantially constant flow rates corresponding to current density of 1 A/cm 2 and 100% external humidification of the gases.
  101. 101
    A membrane electrode assembly comprising an anode, a cathode, and a membrane separating said anode and said cathode, wherein said cathode comprises an electrocatalyst layer having a supported active species loading of not greater than about 0.2 mg/cm 2 and has a delta E value of not greater than about 50 millivolts at 200 mA cm 2 and not greater than about 100 millivolts at 600 mA/cm 2 and not greater than about 170 millivolts at 1000 mA/cm 2 , when measured at 50°C and atmospheric pressure.using a feed gas of pure hydrogen to said anode at a substantially constant flow rate and with external humidification.
  102. 102
    A membrane electrode assembly as recited in Claim 101 , wherein said supported active species comprises platinum.
  103. 103
    A membrane electrode assembly as recited in Claim 101 , wherein said supported active species consists essentially of platinum
  104. 104
    A membrane electrode assembly as recited in Claim 101 , wherein said electrocatalyst layer comprises electrocatalyst particles having a supported active species dispersed on a support, said support having a porosity of at least about 40 percent. . .. -
  105. 105
    A membrane electrode assembly as recited in Claim 101 , which has a cell voltage of at least about 0.6 V at 600 mA/cm 2 , when measured in air.
  106. 106
    A membrane electrode assembly as recited in Claim 101 , wherein said electrocatalyst layer comprises electrocatalyst particles having a supported active species dispersed on a support and wherein said electrocatalyst particles have a supported active species loading that is not greater than about 20 weight percent.
  107. 107
    A membrane electrode assembly as recited in Claim 101 using a feed gas of pure air to said cathode (2.2 stoichiometry) and pure hydrogen to said anode (1 .2 stoichiometry) with substantially constant flow rates corresponding to current density of 1 A/cm 2 and 100% external humidification of the gases.
  108. 108
    A membrane electrode assembly comprising an anode, a cathode, and a membrane separating said anode and said cathode, wherein said cathode comprises an electrocatalyst layer having a supported active species loading of not greater than about 0.4mg/cm 2 and has a delta E value of not greater than about 50 millivolts at 200 mA/cm 2 , not greater than about 100 millivolts at 600 mA/cm 2 and not greater than about 250 millivolts at 1000 mA/cm 2 , when measured at 50°C and atmospheric pressure, using a feed gas of pure hydrogen to said anode at a substantially constant flow rate and with external humidification.
  109. 109
    A membrane electrode assembly as recited in Claim 108, wherein said supported active species comprises platinum.
  110. 110
    1 10. A membrane electrode assembly as recited in Claim 108, wherein said supported active species consists essentially of platinum
  111. 111
    1 1 1 . A membrane electrode assembly as recited in Claim 108, wherein said electrocatalyst layer comprises electrocatalyst particles having a supported active species dispersed on a support, said support having a porosity of at least about 40 percent.
  112. 112
    A membrane electrode assembly as recited in Claim 108, which has a cell voltage of at least 0.6 V at 600 mA/cm 2 in air.
  113. 113
    1 13. A membrane electrode assembly as recited in Claim 108, wherein said electrocatalyst layer comprises electrocatalyst particles having a supported active species comprising platinum dispersed on a support and the platinum loading on said particles is not greater than about 40 weight percent.
  114. 114
    1 14. A membrane electrode assembly as recited in Claim 108 using a feed gas of pure air to said cathode (2.2 stoichiometry) and pure hydrogen to said anode (1 .2 stoichiometry) with substantially constant flow rates corresponding to current density of 1 A/cm 2 and 100% external humidification of the gases.
  115. 115
    1 15. A membrane electrode assembly comprising an anode, a cathode, and a membrane separating said anode and said cathode, wherein said cathode comprises an electrocatalyst layer having a supported active species loading of not greater than about 0.6 mg/cm 2 and has a delta E value of not greater than about 80 millivolts at 200 mA/cm 2 , not greater than about 150 millivolts at 600 mA/cm 2 and not greater than about 200 millivolts at 1000 mA cm 2 , when measured at 50°C and atmospheric pressure, using a feed gas of pure hydrogen to said anode at a substantially constant flow rate and with external humidification.
  116. 116
    1 16. A membrane electrode assembly as recited in Claim 1 15, wherein said supported active species comprises platinum.
  117. 117
    1 17. A membrane electrode assembly as recited in Claim 115, wherein said supported active species consists essentially of platinum
  118. 118
    1 18. A membrane electrode assembly as recited in Claim 1 15, wherein said electrocatalyst layer comprises electrocatalyst particles having a supported active species dispersed on a support, said support having a porosity of at least about 40 percent.
  119. 119
    1 19. A membrane electrode assembly as recited in Claim 1 15, which has a cell voltage of at least about 0.5 V at 700 mA/cm 2 in air. 120. A membrane electrode assembly as recited in Claim 1 15, wherein said electrocatalyst layer comprises electrocatalyst particles having a supported active species comprising platinum dispersed on a support and wherein the platinum loading on said particles is not greater than about 60 weight percent. 121. A membrane electrode assembly as recited in Claim 1 15 using a feed gas of pure air to said cathode (2.2 stoichiometry) and pure hydrogen to said anode (1 .2 stoichiometry) with substantially constant flow rates corresponding to current density of 1 A/cm 2 and 100% external humidification of the gases.
Independent claims119