Claims
- 1. A method of fabricating an amorphous carbon material for use as an electrode in a rechargeable electrochemical cell, said method comprising the steps of:
- providing a multi-functional organic monomer having the structure ##STR4## wherein R.sub.1, R.sub.2, and R.sub.3 are all selected from the group consisting of carboxylic acids of eight carbons or less, carboxylic esters of eight carbons or less, alcohols of eight carbons or less, carboxylic anhydrides of eight carbons or less, amines, and combinations thereof, and wherein at least one of R.sub.1, R.sub.2, and R.sub.3 is different than the others;
- mixing said multi-functional organic monomer with operative amounts of an acidic catalyst;
- subjecting said mixture to a solid state carbonization process in an inert environment; comminuting the amorphous carbon material; and
- heating said comminuting amorphous carbon material in the presence of a lithium-containing compound.
- 2. A method as in claim 1, wherein said multi-functional organic monomer is selected from the group consisting of 5-hydroxyisophthalic acid, 5-aminoisophthalic acid, .alpha.-resorcyclic acid, .beta.-resorcyclic acid, .delta.-resorcyclic acid, gentisic acid, protocatechuic acid, and combinations thereof.
- 3. A method as in claim 1, wherein the weight percentage of said acidic catalyst is between 1 and 25%.
- 4. A method as in claim 1, wherein said acidic catalyst is selected from the group consisting of acetic acid, boric acid, phosphoric acid, p-toluenesulfonic acid, 4-amino benzoic acid, trifluoroacetic acid, and combinations thereof.
- 5. A method as in claim 1, wherein said inert environment is selected from the group consisting of nitrogen, helium, and argon.
- 6. A method as in claim 1, wherein said multi-functional organic monomer is .alpha.-resorcyclic acid.
- 7. A method as in claim 1, wherein said lithium-containing compound is selected from the group consisting of LiNO.sub.3, Li.sub.3 PO.sub.4, LiOH, Li.sub.2 SO.sub.4, Li.sub.2 CO.sub.3, lithium acetate, and combinations thereof.
- 8. A method as in claim 1, wherein said organic monomer is comminuted to a particle size of between about 5 .mu.m to 100 .mu.m.
- 9. A method of fabricating an amorphous carbon material for use as an electrode in an electrochemical device, said method comprising the steps of:
- Providing a multi-functional organic monomer having the structure: ##STR5## wherein R.sub.1, R.sub.2, and R.sub.3 are each a functional group, and are all selected from the group consisting of carboxylic acids of eight carbons or less, carboxylic esters of eight carbons or less, alcohols of eight carbons or less, carboxylic anhydrides of eight carbons or less, amines, and combinations thereof, and wherein at least one of R.sub.1, R.sub.2, and R.sub.3 is different than the others;
- mixing said multi-functional organic monomer with operative amounts of an acidic catalyst;
- subjecting said mixture to a solid state carbonization process in an inert environmental, wherein said solid state carbonation process includes the step of heating said multi-functional organic monomers to a first temperature sufficient to condense said functional groups and heating said condensed multi-functional organic monomers to a second temperature sufficient to polymerize said monomers;
- comminuting the polymerized monomer; and
- heating the comminuting, polymerized monomer in the presence of a lithium containing compound selected from the group consisting of LiNO.sub.3, Li.sub.3 PO.sub.4, LiOH, Li.sub.2 SO.sub.4, Li.sub.2 CO.sub.3, lithium acetate, and combinations thereof.
- 10. A method as in claim 9, wherein said acidic catalyst is selected from the group consisting of acetic acid, boric acid, phosphoric acid, p-toluenesulfonic acid, 4-amino benzoic acid, trifluoroacetic acid, and combinations thereof.
- 11. A method as in claim 9, wherein the weight percentage of said acidic catalyst is between 1 and 25%.
- 12. A method as in claim 9, wherein said multi-functional organic monomer is selected from the group consisting of 5-hydroxyisophthalic acid, 5-aminoisophthalic acid, .alpha.-resorcyclic acid, .beta.-resorcyclic acid, .delta.-resorcyclic acid, gentisic acid, protocatechuic acid, and combinations thereof.
- 13. A method as in claim 9, wherein said multi-functional organic monomer is .alpha.-resorcyclic acid.
- 14. A method as in claim 9, including the further step of heating said multi-functional organic monomers in an inert environment.
- 15. A method as in claim 14, wherein said inert environment is selected from the group consisting of nitrogen, helium and argon.
CROSS REFERENCE TO RELATED APPLICATIONS
This application is related to U.S. Ser. No. 08/534,427, filed Sep. 27, 1995, in the names of Zhang, et al, and assigned to Motorola, Inc., the disclosure of which is incorporated herein by reference.
US Referenced Citations (2)
Number |
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Date |
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5219680 |
Fauteux |
Jun 1993 |
|
5378561 |
Furukawa et al. |
Jan 1995 |
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