EP0809314A2

Positive active material, method of manufacturing and secondary battery using the same

Abstract

A secondary battery exhibiting a long cycle life and comprising a negative pole activating material made of lithium or zinc is provided, the battery at least having a negative pole made of lithium or zinc serving as the negative pole activating material, an electrolyte (electrolytic solution), a separator, a positive pole made of a positive pole activating material, a collecting electrode and a battery case, wherein at least.the surface of the negative pole is covered with a film having a structure which allows ions relating to the battery reactions to pass through. Since growth of dendrite of lithium or zinc at the time of the charge can be prevented, short circuit between the negative pole and the positive pole can be prevented. Therefore, the charge/discharge cycle life can significantly be lengthened. As a result, a lithium secondary battery, a nickel-zinc secondary battery, an air-zinc secondary battery, a bromine-zinc secondary battery and a silver oxide-zinc secondary battery of the long cycle life can be manufactured.

EP0809314A2, drawing sheet 1
Sheet 1 of 20

Term

Term ended

Projected expiry passed 30 November 2013, 12.8 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

45 claims: 11 independent, 34 dependent

  1. 1
    A secondary battery comprising a negative pole substantially made of a negative pole activating material, a positive pole substantially made of a positive pole activating material disposed from said negative pole with an interposed separator;and an electrolyte or an electrolytic solution (electrolytic liquid) held between said negative pole and said positive pole, wherein said positive pole activating material comprises as main component a compound of one or more transition metals having a crystal grain size of 500 Å or less and a group 6A element.
  2. 7
    A secondary battery according to any of claims 1 - 5, wherein said group 6A element which is the main component of said positive pole activating material is sulfur.
  3. 20
    A method of manufacturing a positive pole activating material of a secondary battery, said method comprising the steps of:forming a compound having a crystal grain size of 500 Å or less and composed of transition metal and a group 6A element by using a reaction selected from a group consisting of a solution reaction, a gas phase reaction and a melting and rapid cooling reaction.
  4. 24
    A method according to any of claims 20 to 23, wherein said group 6A element is oxygen.
  5. 25
    A method according to any of claims 20 to 23, wherein said group 6A element is sulfur.
  6. 26
    A method according to any of claims 20 to 25, wherein said process for forming said compound of said transition metal and said group 6A element includes a process for causing it to react with hydrogen.
  7. 27
    A method according to any of claims 21 to 25, wherein said positive pole activating material is composed of a compound of said transition metal and said group 6A element and said solution reaction includes at least a process for forming a hydroxide of said transition metal by using one or more reactions selected from a group consisting of a reaction between a salt of said transition metal and alkali, a hydrolysis reaction of an organic transition metal compound and a reaction between said transition metal alkali.
  8. 28
    A method according to any of claims 20 to 25, wherein said gas phase reaction includes at least a process for causing gasified transition metal salt or an organic transition metal compound or vapor of said transition metal and said group 6A element or a compound of said group 6A element to react with each other in a gas phase or a process for decomposing transition metal salt containing gasified group 6A element or an organic transition metal compound in a gas phase so that said compound of said transition metal and said group 6A element is prepared.
  9. 29
    A method according to any of claims 20 to 25, wherein said activating material is composed of a compound of said transition metal and said group 6A element and said melting and rapid cooling reaction includes at least a process for melting one or more types of materials selected from a group consisting of said transition metal and said transition metal compound to be caused to react with one or more types of materials selected from a group 6A element and said group 6A element compound and rapidly cooling said reactant.
  10. 30
    A method according to any of claims 20 to 25, wherein said positive pole activating material is composed of said transition metal and said group 6A element and at least of a process for applying supersonic vibrations is provided.
  11. 43
    A method of manufacturing a positive pole comprising the step of:mixing one or more types or resins selected from a group consisting of fluorine resin, polyethylene, polypropylene and silicon resin into said positive pole activating material prepared by said manufacturing method according to any of claims 20 to 42.