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Patent · US6677082B2 · B2 · US

Lithium metal oxide electrodes for lithium cells and batteries

(11) Publication number
US6677082B2
(21) Application number
US-88784201-A
(22) Filing date
2001-06-21
(30) Priority date
2000-06-22
(43) Publication date
2004-01-13
(45) Date of grant
2004-01-13
(52) CPC
  • C01G Compounds containing metals not covered by subclasses C01D or C01F: 45/1257, 23/003, 25/006, 45/1221, 45/1228, 53/42
  • C01P Indexing scheme relating to structural and physical aspects of solid inorganic compounds: 2002/22, 2002/52, 2002/72, 2004/82, 2006/40
  • H01M Processes or means, e.g. batteries, for the direct conversion of chemical energy into electrical energy: 2004/021, 4/485, 4/505, 4/525
  • Y02E Reduction of greenhouse gas [ghg] emissions, related to energy generation, transmission or distribution: 60/10
(73) Assignee
UNIV CHICAGO
(54) Title
Lithium metal oxide electrodes for lithium cells and batteries
(57) Abstract

A lithium metal oxide positive electrode for a non-aqueous lithium cell is disclosed. The cell is prepared in its initial discharged state and has a general formula xLiMO 2.(1-x)Li 2 M′O 3 in which 0<x<1, and where M is one or more trivalent ion with at least one ion being Mn or Ni, and where M′ is one or more tetravalent ion. Complete cells or batteries are disclosed with anode, cathode and electrolyte as are batteries of several cells connected in parallel or series or both.

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Claims (16)

  1. A lithium metal oxide positive electrode for a non-aqueous lithium cell prepared in its initial discharged state having a general formula xLiMO 2.(1-x)Li 2 M′O 3 in which 0<x<1, and where M is one or more ions having an average oxidation state of three with at least one ion being Ni, and where M′ is one or more ions with an average oxidation state of four with at least one ion being Mn, with both the LiMO 2 and Li 2 M′O 3 components being layered and the ratio of Li to M and M′ being greater than one and less than two.
  2. A lithium metal oxide positive electrode according to claim 1 in which 0.8≦x<1.
  3. A lithium metal oxide positive electrode according to claim 1 in which 0.9≦x<1.
  4. A lithium metal oxide positive electrode according to claim 1 in which M and M′ are disordered in the electrode structure.
  5. A lithium metal oxide positive electrode according to claim 1 in which M ions are Ni and Co, and M′ is Mn.
  6. A lithium metal oxide positive electrode according to claim 1 in which M is Ni and M′ is Mn.
  7. A lithium metal oxide positive electrode according to claim 1 in which M and M′ ions are partially replaced by mono- or multivalent cations.
  8. A lithium metal oxide positive electrode according to claim 7 in which M and M′ ions are partially replaced by Mg 2+ or Al 3+ ions.
  9. A lithium metal oxide positive electrode according to claim 1 in which the lithium ions are partially replaced by H + cations.
  10. The lithium metal oxide positive electrode of claim 1, wherein M is more than one of V, Mn, Fe, Co, and Ni and wherein M′ is one or more of Mn, Ti, Zr, Ru, Re, and Pt.
  11. The lithium metal oxide positive electrode of claim 10, wherein M is more than one of Mn, Co and Ni and M′ is one or more of Mn, Ti, and Zr.
  12. The lithium metal oxide positive electrode of claim 11, wherein M ions are Ni and Co and M′ is Mn.
  13. An electrochemical cell having a negative electrode and a non-aqueous electrolyte and a positive electrode, said positive electrode having in its initial discharged state a general formula xLiMO 2.(1-x)Li 2 M′O 3 in which 0<x<1, and where M is one or more ions with an average oxidation state of three with at least one ion being Ni and where M′ is one or more ions with an average oxidation state of four and at least one ion being Mn with both the LiMO 2 and Li 2 M′O 3 components being layered and the ratio of Li to M and M′ being greater than one and less than two.
  14. A battery consisting at a plurality of cells, at least some cells including a negative electrode and a non-aqueous electrolyte and a positive electrode, said positive electrode having in its initial discharged state a general formula xLiMO 2.(1-x)Li 2 M′O 3 in which 0<x<1, and where M is one or more ions with an average oxidation state of three and at least one ion being Ni and where M′ is one or more ions with an average oxidation state of four and at least one ion being Mn, with both the LiMO 2 and Li 2 M′O 3 components being layered and the ratio of Li to M and M′ being greater than one and less than two.
  15. A lithium metal positive oxide electrode prepared in its initial discharged state having a general formula xLiMO 2.(1-x)Li 2 M′O 3 in which 0<x<1, and where M is one or more ions with an average oxidation state of three and at least one ion being Ni, and where M′ is one or more ions having an average oxidation state of four with at least one ion being Mn in which the lithium ions are partially replaced by hydrogen cations.
  16. A lithium metal oxide positive electrode for a non-aqueous lithium cell prepared in its initial discharged state in an autoclave at a pressure between 5 and 35 atmospheres and at a temperature between 100-250° C. having a general formula xLiMO 2.(1-x)Li 2 M′O 3 in which 0<x<1, and where M is one or more ions with an average oxidation state of three with at least one ion being Ni, and where M′ is one or more ions with an average oxidation state of four with at least one ion being Mn.

Citations (9)

  • US2002136954A1
  • US2003022063A1
  • US2003027048A1
  • US5153081A
  • US5393622A
  • US6017654A
  • US6221531B1
  • US6551743B1
  • WO0023380A1
Record as JSON
{
  "publication_number": "US6677082B2",
  "country": "US",
  "kind": "B2",
  "title": "Lithium metal oxide electrodes for lithium cells and batteries",
  "abstract": "A lithium metal oxide positive electrode for a non-aqueous lithium cell is disclosed. The cell is prepared in its initial discharged state and has a general formula xLiMO 2.(1-x)Li 2 M′O 3 in which 0<x<1, and where M is one or more trivalent ion with at least one ion being Mn or Ni, and where M′ is one or more tetravalent ion. Complete cells or batteries are disclosed with anode, cathode and electrolyte as are batteries of several cells connected in parallel or series or both.",
  "claims": [
    "1. A lithium metal oxide positive electrode for a non-aqueous lithium cell prepared in its initial discharged state having a general formula xLiMO 2.(1-x)Li 2 M′O 3 in which 0<x<1, and where M is one or more ions having an average oxidation state of three with at least one ion being Ni, and where M′ is one or more ions with an average oxidation state of four with at least one ion being Mn, with both the LiMO 2 and Li 2 M′O 3 components being layered and the ratio of Li to M and M′ being greater than one and less than two.",
    "2. A lithium metal oxide positive electrode according to claim 1 in which 0.8≦x<1.",
    "3. A lithium metal oxide positive electrode according to claim 1 in which 0.9≦x<1.",
    "4. A lithium metal oxide positive electrode according to claim 1 in which M and M′ are disordered in the electrode structure.",
    "5. A lithium metal oxide positive electrode according to claim 1 in which M ions are Ni and Co, and M′ is Mn.",
    "6. A lithium metal oxide positive electrode according to claim 1 in which M is Ni and M′ is Mn.",
    "7. A lithium metal oxide positive electrode according to claim 1 in which M and M′ ions are partially replaced by mono- or multivalent cations.",
    "8. A lithium metal oxide positive electrode according to claim 7 in which M and M′ ions are partially replaced by Mg 2+ or Al 3+ ions.",
    "9. A lithium metal oxide positive electrode according to claim 1 in which the lithium ions are partially replaced by H + cations.",
    "10. The lithium metal oxide positive electrode of claim 1, wherein M is more than one of V, Mn, Fe, Co, and Ni and wherein M′ is one or more of Mn, Ti, Zr, Ru, Re, and Pt.",
    "11. The lithium metal oxide positive electrode of claim 10, wherein M is more than one of Mn, Co and Ni and M′ is one or more of Mn, Ti, and Zr.",
    "12. The lithium metal oxide positive electrode of claim 11, wherein M ions are Ni and Co and M′ is Mn.",
    "13. An electrochemical cell having a negative electrode and a non-aqueous electrolyte and a positive electrode, said positive electrode having in its initial discharged state a general formula xLiMO 2.(1-x)Li 2 M′O 3 in which 0<x<1, and where M is one or more ions with an average oxidation state of three with at least one ion being Ni and where M′ is one or more ions with an average oxidation state of four and at least one ion being Mn with both the LiMO 2 and Li 2 M′O 3 components being layered and the ratio of Li to M and M′ being greater than one and less than two.",
    "14. A battery consisting at a plurality of cells, at least some cells including a negative electrode and a non-aqueous electrolyte and a positive electrode, said positive electrode having in its initial discharged state a general formula xLiMO 2.(1-x)Li 2 M′O 3 in which 0<x<1, and where M is one or more ions with an average oxidation state of three and at least one ion being Ni and where M′ is one or more ions with an average oxidation state of four and at least one ion being Mn, with both the LiMO 2 and Li 2 M′O 3 components being layered and the ratio of Li to M and M′ being greater than one and less than two.",
    "15. A lithium metal positive oxide electrode prepared in its initial discharged state having a general formula xLiMO 2.(1-x)Li 2 M′O 3 in which 0<x<1, and where M is one or more ions with an average oxidation state of three and at least one ion being Ni, and where M′ is one or more ions having an average oxidation state of four with at least one ion being Mn in which the lithium ions are partially replaced by hydrogen cations.",
    "16. A lithium metal oxide positive electrode for a non-aqueous lithium cell prepared in its initial discharged state in an autoclave at a pressure between 5 and 35 atmospheres and at a temperature between 100-250° C. having a general formula xLiMO 2.(1-x)Li 2 M′O 3 in which 0<x<1, and where M is one or more ions with an average oxidation state of three with at least one ion being Ni, and where M′ is one or more ions with an average oxidation state of four with at least one ion being Mn."
  ],
  "cpc": [
    "C01G 45/1257",
    "C01G 23/003",
    "C01G 25/006",
    "C01G 45/1221",
    "C01G 45/1228",
    "C01G 53/42",
    "C01P 2002/22",
    "C01P 2002/52",
    "C01P 2002/72",
    "C01P 2004/82",
    "C01P 2006/40",
    "H01M 2004/021",
    "H01M 4/485",
    "H01M 4/505",
    "H01M 4/525",
    "Y02E 60/10"
  ],
  "assignees": [
    "UNIV CHICAGO"
  ],
  "filing_date": "2001-06-21",
  "publication_date": "2004-01-13",
  "grant_date": "2004-01-13",
  "priority_date": "2000-06-22",
  "application_number": "US-88784201-A",
  "family_id": "26908237",
  "citations": [
    "US2002136954A1",
    "US2003022063A1",
    "US2003027048A1",
    "US5153081A",
    "US5393622A",
    "US6017654A",
    "US6221531B1",
    "US6551743B1",
    "WO0023380A1"
  ]
}

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