AU4469293A

Manganese dioxide cathode for a rechargable alkaline cell, and cell containing the same

Abstract

This invention relates to rechargeable manganese dioxide cells (usually alkaline cells with zinc anodes or cells having non-aqueous electrolyte and lithium anodes), and particularly to the cathode therefor. In keeping with the present invention, the cathodes are essentially unconstrained, that is, no cage is used in the cell between the cathodes and the anodes. The cathode is restricted from significantly changing its dimensions during discharge of the cell, when it is inclined to swell, as opposed to the tendency of the cathode to contract during a charge cycle. The cathode substantially fills the entire space allotted for it within the cell, with a slight accommodation for height-wise or longitudinal expansion or growth of the cathode of bobbin-type cells, or cross-wise expansion or growth of button-type cells. There may be additives in the cathode mix, including particularly conductive fibres of graphite or other conductive materials; and other materials may also be added to the cathode mix, including metallic additives. Methods of manufacture are also provided by the present invention, including compaction and recompaction of the cathode pellet, and a range of compaction pressures is suggested. Cells in keeping with the present invention are capable of exhibiting high current drain rates, and long cycle life.

Term

Term ended

Projected expiry passed 17 August 2013, 13.1 years ago.

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27 claims: 14 independent, 13 dependent

  1. 1
    The claims defining the invention are as follows:1. A rechargeable alkaline electrochemical cell having a container, internal components comprising an anode, a separator, a manganese dioxide cathode, an alkaline electrolyte, and a closure member;wherein said closure member is placed over said anode, separator, cathode, and electrolyte, within said container, so as to seal said internal components within said container wherein said cathode contains from 4% to 8% by weight thereof of said alkaline electrolyte, and optionally from 5% to 15% by weight thereof of graphite, and optionally from 0.1% to 10.0% by weight thereof of conductive carbon;and wherein said cathode further contains from 0.1% to 5.0% by weight thereof of conductive fibres chosen from the group consisting of carbon fibres, graphite fibres, carbon fibres plated with nickel, carbon fibres plated with silver, graphite fibres plated with nickel, graphite fibres plated with silver, copper fibres plated with nickel, and copper fibres plated with silver.
  2. 4
    The rechargeable alkaline electrochemical cell of any one of claims 1 to 3, wherein said anode is chosen from the group consisting of zinc, hydrogen, iron, cadmium, mercury, AMD/0757a - 28 lead and bismuth.
  3. 6
    The rechargeable alkaline electrochemical cell of anyone of claims 1 to 5, wherein said conductive fibres are graphite fibres.
  4. 9
    The rechargeable alkaline electrochemical cell of any one of claims 1 to 8, wherein said alkaline electrolyte is potassium hydroxide having a normality of from 6 to 12.
  5. 10
    A rechargeable alkaline electrochemical cell having a container, internal components comprising an anode, a separator, a manganese dioxide cathode, an alkaline electrolyte, and a closure member;wherein said closure member is placed over said anode, separator, cathode, and electrolyte, within said container, so as to seal said internal components within said container wherein said cathode contains from 4% to 8% by weight thereof of said alkaline electrolyte, and optionally from 5% to 15% by weight thereof of graphite, and optionally from 0.1% to 10.0% by weight thereof of conductive carbon;and wherein said cathode further contains from 1.0% to 5.0% by weight thereof of a metal-based additive chosen from the group consisting of zinc, zinc oxide, and zinc stearate. AMD/0757a - 29
  6. 13
    The rechargeable alkaline electrochemical cell of any one of claims 10 to 12, wherein said anode is chosen from the group consisting of zinc, hydrogen, iron, cadmium, mercury, lead and bismuth.
  7. 14
    The rechargeable alkaline electrochemical cell of claim 13, wherein said anode is zinc.
  8. 15
    The rechargeable alkaline electrochemical cell of claim 14, wherein said metal-based additive is zinc, and is present in the amount of from 1.0% to 2.5% by weight of said cathode.
  9. 18
    The rechargeable alkaline electrochemical cell of any one of claims 10 to 17, wherein said alkaline electrolyte is potassium hydroxide having a normality of from 6 to 12.
  10. 19
    A rechargeable alkaline electrochemical cell having a AMD/0757a - 30 container, internal components comprising an anode, a separator, a manganese dioxide cathode, an alkaline electrolyte, and a closure member;wherein said closure member is placed over said anode, separator, cathode and electrolyte, within said container, so as to seal said internal components within said container;wherein said cathode contains from 4% to 8¾ by weight thereof of said alkaline electrolyte, and optionally from 5% to 15% by weight thereof of graphite, and optionally from 0.1% to 10.0% by weight thereof of conductive carbon;wherein said cathode further contains from 0.1% to 5.0% by weight thereof of conductive fibres chosen from the group consisting of carbon fibres, graphite fibres, carbon fibres plated with nickel, carbon fibres plated with silver, graphite fibres plated with nickel, graphite fibres plated with silver, copper fibres plated with nickel, and copper fibres plated with silver;and wherein said cathode optionally further contains from 1.0% to 5.0% by weigh thereof of a metal-based additive chosen from the group consisting of zinc, zinc oxide, and zinc stearate.
  11. 20
    A rechargeable alkaline electrochemical cell having a container, internal components comprising an anode, a separator, a manganese dioxide cathode, an alkaline electrolyte, and a closure member;wherein said closure member is placed over said anode separator, cathode, and electrolyte, within said container, so as to seal said internal components within said container;wherein said cathode contains from 4% to 8% by weight AMD/0757a - 31 thereof of said alkaline electrolyte, and optionally from 5% to 15% by weight thereof of graphite, and optionally from 0.1% to 10.0% by weight thereof of conductive carbon;wherein said cathode further contains from 1.0% to 5.0% by weight thereof of a metal-based additive chosen from the group consisting of zinc, zinc-oxide, and zinc-stearate;and wherein said cathode optionally further contains from 0.1% to 5.0% by weight thereof of conductive fibres chosen from the group consisting of carbon fibres, graphite fibres, carbon fibres plated with nickel, carbon fibres plated with silver, graphite fibres plated with nickel, graphite fibres plated with silver, copper fibres plated with nickel, and copper fibres plated with silver.
  12. 21
    A method of preparing a cathode mix for use in a rechargeable alkaline electrochemical cell; wherein said cell will comprise internal components including a cathode, an anode, a separator, and an alkaline electrolyte, sealed within a container by a closure member; wherein said cathode mix will comprise manganese dioxide, from 4% to 8% by weight thereof of said alkaline electrolyte; and optionally from 5% to 15% by weight thereof of graphite, and optionally from 0.1% to 10.0% by weight thereof of conductive carbon; and optionally from 0.1% to 5.0% by weight thereof of conductive fibres, chosen from the group consisting of carbon fibres, graphite fibres, carbon fibres plated with nickel, carbon fibres plated with silver, graphite fibres plated with nickel, graphite fibres plated with silver, copper fibres plated with nickel, and copper fibres plated with silver; and optionally from 1.0% to 5.0% AMD/0757a - 32 by weight thereof of a metal-based additive chosen from the group consisting of zinc, zinc oxide, and zinc stearate; said method comprising the steps of:(a) mixing said manganese dioxide and any of the optional admix components to form a uniform dry mix;(b) adding the amount of alkaline electrolyte to be used in said cathode composition to the uniform dry mix, and continuing to blend the mix;(c) screening the mix to remove agglomerates therefrom, and continuing to blend and screen until a uniform moist blended mix is achieved;(d) compacting said blended mix;(e) granulating the compacted blended mix;(f) screening the granulated blended mix;(g) forming cathode pellets from said screened blended mix;and (h) placing the pellets in appropriate containers for use as cathodes in the cells to be manufactured.
  13. 26
    A rechargeable alkaline electrochemical cell, substantially as herein described with reference to the accompanying drawings.
  14. 27
    A method of preparing a cathode mix for use in a rechargeable alkaline electrochemical cell, substantially as herein described with reference to the accompanying drawings
Independent claims14