Claims
- 1. A process for preparing carbon/ceramic composite for electrochemical supercapacitors and lithium ion intercalation batteries comprising:
- (1) forming a carbon/ceramic composite into a desired shape,
- (2) contacting the shaped carbon/ceramic composite with an amount of an organic solution comprising an organic solvent and at least one electrolyte salt sufficient to wet carbon particles in the shaped composite and allow the internal microscopic surface area of the composite to become electrochemically accessible, and
- (3) removing residual solvent and electrolyte salt from the composite and form a carbon/ceramic composite electrode useful as a electrochemical supercapacitor or lithium ion intercalation battery.
- 2. A process according to claim 1, wherein the solvent comprises an organic solvent selected from the group consisting of propylene carbonate, tetrahydrofuran, acetonitrile, dimethylsulfoxide, dichloromethane and acetone.
- 3. A process according to claim 1, wherein the electrolyte salt is a combination of a cation selected from the group consisting of lithium, sodium and tetraalkylammonium with an anion selected from the group consisting of perchlorate, tetrafluoroborate and hexafluorophosphate.
- 4. A process according to claim 2 or 3, wherein the solvent is propylene carbonate and the electrolyte salt is lithium perchlorate (LiClO.sub.4) or tetrabutylammonium tetrafluoroborate (TBA(BF.sub.4)).
- 5. A method for producing electrochemical non-aqueous supercapacitors and lithium ion electrodes for intercalation batteries from a sol-gel derived carbon/ceramic composite which comprises contacting an electrode formed into a desired shape from the composite with a liquid solution comprising an organic solvent and an electrolyte salt in an amount and for a time sufficient to wet internal microscopic surface area of the electrode, and washing the electrode with an organic solution to remove residual organic solvent and electrolyte salt and form an electrode having substantially an entire microscopic surface area electrochemically accessible and being useful for non-aqueous superconductors and lithium ion intercalation batteries.
- 6. A method according to claim 5 for producing a non-aqueous electrochemical supercapacitor or lithium ion intercalation battery wherein the solvent is propylene carbonate and the electrolyte salt is TBABF.sub.4 or LiClO.sub.4.
- 7. A method for producing electrochemical non-aqueous supercapacitors and lithium ion electrodes for intercalation batteries from a sol-gel derived carbon/ceramic composite which comprises immersing an electrode formed into a desired shape from the composite into a liquid solution comprising an organic solvent and an electrolyte salt in an amount and for a time sufficient to wet internal microscopic surface area of the electrode, and optionally, washing the electrode with an organic solution to remove residual organic solvent and electrolyte salt and form an electrode having substantially an entire microscopic surface area electrochemically accessible and being useful for non-aqueous superconductors and lithium ion intercalation batteries.
- 8. A method according to claim 7 for producing a non-aqueous electrochemical supercapacitor or lithium ion intercalation battery wherein the solvent is propylene carbonate and the electrolyte salt is TBABF.sub.4 or LiClO.sub.4.
Government Interests
The invention described and claimed herein was supported by the U.S. Department of The Army under grant No. DAAL01-95-2-3531.
US Referenced Citations (5)