Claims
- 1. A battery comprising first and second electrodes, an alkaline electrolyte, and an ionically conductive separator disposed between the electrodes, the separator being formed by applying a coating composition to the surface of at least one of the electrodes and solidifying material contained in the coating composition, the coating composition comprising a gel or polymer dispersed in a polar solvent, wherein the separator occupies less than 10 percent of the volume of the battery.
- 2. The battery of claim 1, wherein the separator is in contact with both of the first and second electrodes.
- 3. A battery comprising first and second electrodes, an alkaline electrolyte, and an ionically conductive separator disposed between the electrodes, the separator being formed by applying a coating composition to the surface of at least one of the electrodes and solidifying material contained in the coating composition, the coating composition comprising cellulose viscose.
- 4. A battery comprising first and second electrodes, an alkaline electrolyte, and an ionically conductive separator disposed between the electrodes, the separator being formed by applying a coating composition to the surface of at least one of the electrodes and solidifying material contained in the coating composition, the coating composition comprising a gel or polymer dispersed in a polar solvent, wherein the coating composition includes fibers.
- 5. The battery of claim 4, wherein the coating composition contains an amount of fiber which is from about 3 percent to about 50 percent of the weight of the composition.
- 6. A battery comprising first and second electrodes, an alkaline electrolyte, and an ionically conductive separator disposed between the electrodes, the separator being formed by applying a coating composition to the surface of at least one of the electrodes and solidifying material contained in the coating composition, the coating composition comprising a gel or polymer dispersed in a polar solvent, wherein the coating composition comprises kappa-carrageenan, lambda-carrageenan, iota-carrageenan, hydroxymethyl cellulose, hydroxyethyl cellulose, hydroxypropyl cellulose, or combinations thereof.
- 7. The battery of claim 6, wherein said coating composition is a polymer dispersion.
- 8. The battery of claim 6, wherein the coating composition comprises from about 1 to about 10 weight percent kappa-carrageenan.
- 9. A battery comprising first and second electrodes, an alkaline electrolyte, and an ionically conductive separator disposed between the electrodes, the separator being formed by applying a coating composition to the surface of at least one of the electrodes and solidifying material contained in the coating composition, the coating composition comprising a gel or polymer dispersed in a polar solvent, wherein the coating composition comprises kappa-carrageenan, hydroxyethyl cellulose, or a blend of kappa-carrageenan and hydroxyethyl cellulose.
- 10. A battery comprising first and second electrodes, an alkaline electrolyte, and an ionically conductive separator disposed between the electrodes, the separator being formed by applying a coating composition to the surface of at least one of the electrodes and solidifying material contained in the coating composition, the coating composition comprising a gel or polymer dispersed in a polar solvent, wherein the coating composition is a polymer dispersion comprising hydroxyethyl cellulose in water and containing divinylsulfone cross-linking agent in an amount of from about 0.05 to about 2 percent of the weight of the composition.
- 11. A battery comprising first and second electrodes, an alkaline electrolyte, and an ionically conductive separator disposed between the electrodes, the separator being formed by applying a coating composition to the surface of at least one of the electrodes and solidifying material contained in the coating composition, the coating composition comprising a gel or polymer dispersed in a polar solvent, wherein the coating composition is comprised of kappa-carrageenan, hydroxyethyl cellulose, and divinylsulfone cross-linking agent, the weight ratio of hydroxyethyl cellulose to kappa-carrageenan being from about 1:3 to about 3:1, and the amount of cross-linking agent being from about 0.05 to about 2 percent of the weight of the composition.
- 12. The battery of claim 11, wherein the amount of hydroxyethyl cellulose and kappa-carrageenan in the coating composition is from about 1 percent to about 10 percent by weight.
- 13. A battery comprising first and second electrodes, an alkaline electrolyte, and an ionically conductive separator disposed between the electrodes, the separator being formed by applying a coating composition to the surface of at least one of the electrodes and solidifying material contained in the coating composition, the coating composition comprising a gel or polymer dispersed in a polar solvent, wherein the separator is in contact with both of the first and second electrodes.
- 14. A method of providing a separator on an electrode for an alkaline battery, comprising:
applying a liquid aqueous coating composition to an electrode surface; and solidifying the coating composition on said electrode surface to form a separator membrane, wherein the separator membrane occupies less than 10 percent of the volume of the battery.
- 15. The method of claim 14 further comprising the step of disposing the electrode adjacent to another electrode so that the separator is in contact with both electrodes.
- 16. A method of providing a separator on an electrode for an alkaline battery, comprising:
applying a liquid aqueous coating composition to an electrode surface; and solidifying the coating composition on said electrode surface to form a separator membrane, wherein the coating composition comprises kappa-carrageenan, lambda-carrageenan, iota-carrageenan, hydroxymethyl cellulose, hydroxyethyl cellulose, hydroxypropyl cellulose, or a combination thereof.
- 17. A method of providing a separator on an electrode for an alkaline battery, comprising:
applying a liquid aqueous coating composition to an electrode surface; and solidifying the coating composition on said electrode surface to form a separator membrane, wherein the coating composition comprises kappa-carrageenan, hydroxyethyl cellulose, or a combination of kappa-carrageenan and hydroxyethyl cellulose.
- 18. A method of providing a separator on an electrode for an alkaline battery, comprising:
applying a liquid aqueous coating composition comprising fibers to an electrode surface; and solidifying the coating composition on said electrode surface to form a separator membrane.
- 19. The method of claim 18, wherein the coating composition includes fibers selected from the group consisting of cellulose, wool, silk, cotton, rayon, boron, boron carbide, boron nitride, carbon, aluminum silicate, fused silica fibers, wood pulp, and polyolefin fibers.
- 20. The method of claim 18, wherein the fibers are selected from the group consisting of cellulose, cotton, rayon, boron, boron carbide, boron nitride, aluminum silicate, fused silica fibers, wood pulp, and polyolefin fibers.
- 21. A method of providing a separator on an electrode for an alkaline battery, comprising:
applying a liquid aqueous coating composition to an electrode surface; solidifying the coating composition on said electrode surface to form a separator membrane; and disposing the electrode adjacent to another electrode so that the separator membrane is in contact with both electrodes.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation of application Ser. No. 09/216,571, filed Dec. 18, 1998.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09216571 |
Dec 1998 |
US |
Child |
09792847 |
Feb 2001 |
US |