Nova Patents
WO2015073745A9

Battery

Abstract

A battery includes a first conductive substrate portion having a first face, and a second conductive substrate portion having a second face opposed to the first face. Each of the first and second faces has a perimeter portion and an interior portion inside the perimeter portion. The battery also includes a first electrode material disposed in contact with the interior portion of at least one of the first and second faces, and a jettable electrolyte material disposed in contact with the first electrode material. A second electrode material is disposed in contact with the electrolyte material, and a conductive tab is disposed in contact with the second electrode material. The conductive tab extends outwardly from the interior region beyond the perimeter portion of at least one of the first and second faces.

WO2015073745A9, drawing sheet 1
Sheet 1 of 26

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

189 claims: 20 independent, 169 dependent

  1. 1
    WE CLAIM:1. A battery, comprising: a first conductive substrate portion having a first face, and a second conductive substrate portion having a second face opposed to the first face, wherein each of the first and second faces has a perimeter portion and an interior portion inside the perimeter portion;a first electrode material disposed in contact with the interior portion of at least one of the first and second faces;a jettable electrolyte material disposed in contact with the first electrode material;a second electrode material disposed in contact with the electrolyte material;and a conductive tab disposed in contact with the second electrode material, wherein the conductive tab extends outwardly from the interior region beyond the perimeter portion of at least one of the first and second faces.
  2. 20
    A battery, comprising:a first conductive substrate portion having a first face, and a second conductive substrate portion having a second face opposed to the first face, wherein each of the first and second faces has a perimeter portion and an interior portion inside the perimeter portion;a first electrode material disposed in contact with the interior portion of at least one of the first and second faces;an electrolyte material disposed in contact with the first electrode material;a second electrode material disposed in contact with the electrolyte material;and a conductive tab disposed in contact with the second electrode material, wherein the conductive tab extends outwardly from the interior region beyond the perimeter portion of at least one of the first and second faces;wherein at least one of the first electrode material, the electrolyte material, and the conductive tab comprises a jettable material.
  3. 31
    A battery, comprising:a conductive substrate having integral substrate portions, wherein the conductive substrate has a top face, wherein the top face has a margin region and an interior region inside the margin region;an adhesive disposed on the top face in the margin region;a first electrode material disposed in contact with at least a portion of the top face in the interior region;an electrolyte material disposed on the first electrode material;a second electrode material disposed on the electrolyte material;a conductive tab disposed in contact with the second electrode material, wherein the conductive tab extends outwardly beyond the interior region;wherein the substrate portions are folded to cause the adhesive to join the substrate portions together in a folded configuration;and wherein at least one of the adhesive, the first electrode material, the electrolyte material, and the conductive tab is jettable.
  4. 40
    A battery, comprising:first and second discrete conductive substrate portions, wherein each conductive substrate portion has a face including a margin region;an adhesive disposed in at least one of the margin regions of the conductive substrate portions;a first electrode material disposed in contact with at least a portion of at least one of the faces;an electrolyte material disposed in contact with the first electrode material;a second electrode material disposed in contact with the electrolyte material;a conductive tab disposed in contact with the second electrode material, wherein the conductive tab is exposed outside of the battery;and wherein the adhesive joins the margin regions of the faces;and wherein at least one of the adhesive, the first electrode material, the electrolyte material, and the conductive tab is jettable.
  5. 47
    48. An adhesive material comprising a vinyl polymer and a solvent that includes xylene and toluene, wherein the adhesive material has a viscosity in the range from about 1.0 cP to about 20.0 cP such that the adhesive material can be applied to a surface using an ink jet print head.
  6. 61
    62. An adhesive adapted to be applied using an ink jet print head, comprising:from about 1% to about 8% by weight of a vinyl polymer;from about 1% to about 98% by weight of toluene;and from about 1% to about 98%> by weight of xylene;and up to about 1.5% by weight of a surfactant;wherein the adhesive has a viscosity such that the adhesive can be jetted by the ink jet print head.
  7. 66
    67. A method of manufacturing a battery using an ink jet print head comprising the steps of:jetting an adhesive onto a surface, and wherein the adhesive material comprises a solvent and has a viscosity in the range from about 1.0 cP to about 20.0 cP;and vaporizing a portion of the solvent.
  8. 78
    79. An electrical insulator material comprising a polymer and a solvent, wherein the electrical insulator material has a viscosity in the range of from about 1.0 to about 20.0 cP such that the electrical insulator material can be applied to a surface in a layer using an ink jet print head.
  9. 93
    94. A method of manufacturing a battery using an ink jet print head comprising the steps of:jetting an electrical insulator material onto a surface, wherein the electrical insulator material comprises a polymer and a solvent and has a viscosity in the range of from about 1.0 to about 20.0 cP;and vaporizing a portion of the solvent.
  10. 103
    104. A cathode material comprising an active material, a carbon material, a binder polymer, a lithium salt, and a solvent, wherein the cathode material has a viscosity in the range from about from about 3.0 to about 30.0 cP such that the cathode material can be applied to a surface using an ink jet print head.
  11. 115
    116. A cathode material adapted to be applied using an ink jet print head, comprising:from about 5% to about 20% by weight of an active material;from about 0.1% to about 2% by weight of a carbon black;up to about 10%) by weight of a graphite;from about 0.25%> to about 5% by weight of a binder polymer;from about 50%> to about 94.05%) by weight of a solvent;from about 0.5% to about 5% by weight of a lithium salt;from about 0.1% to about 6%> by weight of a dispersant;and up to about 2.5%) by weight of a surfactant;wherein the cathode material has a viscosity such that the cathode material can be jetted from an ink jet print head.
  12. 122
    123. A method of manufacturing a battery using an ink jet print head comprising the steps of:jetting a cathode material onto a surface, wherein the cathode material comprises an active material and a solvent and has a viscosity in the range of about 3.0 cP to about 30 cP;and vaporizing a portion of the solvent.
  13. 135
    136. A method of manufacturing a cathode ink, comprising the steps of:grinding an active material in a first solvent to create an active material mixture having an average particle size in the range from about 0.100 microns to about 0.500 microns;grinding a carbon black in a second solvent to create a carbon black mixture having an average particle size in the range from about 0.100 microns to about 0.500 microns;mixing a binder polymer in a third solvent to create a polymer mixture;mixing a lithium salt in a fourth solvent to create a lithium salt mixture;combining the active material mixture, the carbon black mixture, the polymer mixture, and the lithium salt mixture to create a cathode ink.
  14. 138
    139. A cathode material comprising :an active material, wherein the active material has an average particle size in the range from about 0.100 microns to about 0.500 microns;a carbon material, wherein the carbon black has an average particle size in the range from about 0.100 microns to about 0.500 microns;and a lithium salt.
  15. 140
    141. An electrolyte material comprising a polymer, a salt, and a solvent, wherein the electrolyte material has a viscosity in the range from about 3.0 to 20.0 cP such that the electrolyte material can be applied to a surface in a layer using an ink jet print head.
  16. 155
    156. An electrolyte adapted to be applied using an ink jet print head, comprising:from about 0.5% to about 2.5% by weight of a polymer;from about 0.5% to about 5% by weight of a lithium salt;and from about 80%> to about 99% by weight of a solvent;wherein the electrolyte has a viscosity such that the electrolyte can be jetted by the ink jet print head.
  17. 158
    159. A method of manufacturing a battery using an ink jet print head comprising the steps of:jetting an electrolyte material onto a surface, wherein the electrolyte material comprises a solvent and has a viscosity in the range of range from about 3.0 cP to 20.0 cP;and vaporizing a portion of the solvent.
  18. 166
    167. An anode base material comprising:from about 50% to about 85% by weight of metallic lithium particles substantially free from other metals;and from about 15% to about 50% by weight of a solvent;wherein the anode base material has a viscosity such that the anode base material can be extruded.
  19. 171
    172. A battery, comprising :an anode formed from an anode base material including from about 50% to about 85% by weight of metallic lithium particles substantially free from other metals and from about 15% to about 50%) by weight of a solvent;and a surface, wherein the anode base material is disposed on the surface.
  20. 181
    182. A method of forming an anode, comprising the steps of:jetting a boundary material onto a surface to form a boundary;extruding an anode base material onto the surface within the boundary;and activating the anode base material to form an anode.