Claims
- 1. A method of making lithium-intercalateable electrodes for batteries comprising the steps of:
(A) applying a film-forming slurry to an electrically-conductive grid, said slurry comprising a plurality of said lithium-intercalateable particles dispersed throughout a mixture including polymeric binder using a polymeric backing film defining a separator; and (B) thereafter, drying said slurry, thereby forming an electrode having said separator.
- 2. The method of claim 1 further including the step of:
forming the film-forming slurry to further include a plasticizer for the binder and a solvent, wherein the drying step comprising the substep of removing the solvent.
- 3. The method of claim 2 further comprising the step of removing said plasticizer so as to leave a network of pores pervading said binder.
- 4. The method of claim 3 further comprising the step of backfilling said pores with a lithium-ion-conductive electrolyte.
- 5. A method of making lithium-intercalateable cells for a lithium-ion battery with polymeric separators comprising the steps of:
(A) applying a first film-forming slurry with a polymeric separator backing onto a first face of an electrically conductive grid, said first film comprising a plurality of lithium-intercalateable particles dispersed throughout a mixture of a polymeric binder compatible with said battery and a plasticizer for said binder; (B) applying a second film-forming slurry to a second face of said polymeric separator backing opposite said first face, said second film comprising a plurality of said lithium-intercalateable particles dispersed throughout a mixture of said binder, said plasticizer and a solvent for said binder; (C) thereafter, drying said electrode by removing said solvent; (D) removing said plasticizer from said binder so as to leave a network of pores pervading said binder; and (E) backfilling said pores with a lithium-ion-conductive electrolyte.
- 6. The method according to claim 5 including heating said electrode to effect said drying.
- 7. The method according to claim 6 including the step of pressing said first and second films together while said films are still warm from said heating.
- 8. A method of making lithium intercalcateable bicells for a lithium ion battery with polymeric separators comprising the steps of:
(A) applying a film-forming slurry to a first face of an electrically-conductive grid, said slurry comprising a plurality of said lithium-intercalcateable particles dispersed throughout a mixture including polymeric binder; (B) thereafter, drying the slurry, thereby forming an electrode; (C) applying a film-forming slurry to a second face of said electrically-conductive grid, said slurry comprising a plurality of said lithium-intercalcateable particles dispersed throughout a mixture including polymeric binder; (D) thereafter, drying the slurry, thereby forming an electrode with film on either side of grid; (E) applying a film-forming slurry with a polymeric separator backing to an electrically-conductive grid, said slurry comprising a plurality of said lithium-intercalcateable particles dispersed throughout a mixture including polymeric binder; (F) thereafter, drying said slurry and polymeric backing, thereby forming an electrode laminated to said separator; (G) laminating on a first side of said electrode (D) to said electrode with separator (F); and (H) laminating on a second side of said electrode (D) opposing said first side to a second said electrode with separator (F).
- 9. The method of claim 8 further including the step of:
forming the film-forming slurry to further include a plasticizer for the binder and a solvent, wherein the drying step comprising the substep of removing the solvent.
- 10. The method of claim 9 further comprising the step of removing said plasticizer so as to leave a network of pores pervading said binder.
- 11. The method of claim 10 further comprising the step of backfilling said pores with a lithium-ion-conductive electrolyte.
- 12. A method of making lithium-intercalateable electrodes for a lithium-ion battery with polymeric separators comprising the steps of:
(A) simultaneously applying (i) a first film-forming slurry with a first face of polymeric separator backing onto an electrically conductive grid comprising a plurality of lithium-intercalateable particles dispersed throughout a mixture of a polymeric binder compatible with said battery and a plasticizer for said binder; and (ii) a second film-forming slurry to a second face of said polymeric separator backing opposite said first face comprising a plurality of said lithium-intercalateable particles dispersed throughout a mixture of said binder, said plasticizer and a solvent for said binder; (B) thereafter, drying said electrode by removing said solvent to form respective first and second films; (C) removing said plasticizer from said binder so as to leave a network of pores pervading said binder; and (D) backfilling said pores with a lithium-ion-conductive electrolyte.
- 13. The method according to claim 12 including heating said electrode to effect said drying.
- 14. The method according to claim 13 including the step of pressing said first and second films together while said films are still warm from said heating.
RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. application Ser. No. 09/862,388 filed May 21, 2001, which is copending, hereby incorporated by reference in its entirety.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09862388 |
May 2001 |
US |
Child |
09912987 |
Jul 2001 |
US |