Claims
- 1. An ion conducting membrane comprising a plurality of covalently linked dendrimers having acid functional terminal groups.
- 2. The ion conducting membrane of claim 1 wherein the acid functional terminal groups are selected from the group consisting of carboxylic acid groups and carboxylic acid derivatives.
- 3. The ion conducting membrane of claim 1 wherein the acid functional terminal groups are selected from the group consisting of sulfonic acid groups and sulfonic acid derivatives.
- 4. The ion conducting membrane of claim 1 wherein the acid functional terminal groups are selected from the group consisting of phosphonic acid groups and phosphonic acid derivatives.
- 5. The ion conducting membrane of claim 1 wherein the dendrimers are covalently linked by alcohol group-containing linking compounds.
- 6. The ion conducting membrane of claim 1, wherein the dendrimers are covalently linked by reacting the acid functional terminal groups on a plurality of dendrimers with polyfunctional amine linking compounds.
- 7. The ion conducting membrane of claim 6 wherein the polyfunctional amine is a diaminoaryl compound, a diaminoalkane, or a diaminoalkene.
- 8. The ion conducting membrane of claim 6 wherein the polyfunctional amine is 1,2-diaminoethane.
- 9. The ion conducting membrane of claim 1 wherein the dendrimers are covalently linked through cross-coupling reactions.
- 10. The ion conducting membrane of claim 9 wherein the dendrimers are covalently linked through cross-coupling reactions selected from the group consisting of Susuki coupling, Stille coupling, Kumada coupling, and Ulmann coupling reactions.
- 11. The ion conducting membrane of claim 1 wherein the dendrimers are covalently linked through copolymerization reactions.
- 12. The ion conducting membrane of claim 1 wherein the ion conducting membrane further comprises water.
- 13. The ion conducting membrane of claim 1 wherein the ion conducting membrane further comprises an ionic liquid.
- 14. The ion conducting membrane of claim 13 wherein the ionic liquid is a substituted imidazolium salt.
- 15. The ion conducting membrane of claim 14 wherein the substituted imidazolium salt is selected from the group consisting of 1-n-butyl-methylimidazolium and 1-ethyl-3-methylimidazolium.
- 16. The ion conducting membrane of claim 1 wherein the dendrimers are Frechét type dendrimers.
- 17. The ion conducting membrane of claim 1 wherein the ion conducting membrane is thermally stable at temperatures between about 100 and about 200° C.
- 18. The ion conducting membrane of claim 1 wherein the ion conducting membrane has an acid equivalent weight between about 150 and about 500.
- 19. The ion conducting membrane of claim 1 wherein the ion conducting membrane has an acid equivalent weight between about 200 and about 400.
- 20. The ion conducting membrane of claim 1 wherein the ion conducting membrane has an acid equivalent weight between about 240 and about 250.
- 21. The ion conducting membrane of claim 1 wherein the dendrimers contain heteroatoms selected from the group consisting of nitrogen, oxygen, silicon, phosphorus, and sulfur atoms.
- 22. The ion conducting membrane of claim 1 wherein the dendrimers contain transition metal heteroatoms.
- 23. The ion conducting membrane of claim 1 wherein the dendrimers are formed from multi-substituted aryl compounds.
- 24. The ion conducting membrane of claim 1 wherein at least some of the dendrimers are fluorinated.
- 25. A fuel cell comprising the ion conducting membrane of claim 1 sandwiched between a cathode and an anode.
- 26. The fuel cell of claim 25 wherein the fuel cell is of a type selected from the group consisting of polymer electrolyte membrane fuel cells and direct methanol fuel cells.
- 27. A method for preparing an ion-conducting membrane comprising the steps of:
(a) reacting a linking compound with a plurality of dendrimers having acid terminal groups to form a covalently linked network polymer; and (b) casting the network polymer into a membrane.
- 28. The method of claim 27 wherein the acid terminal groups are selected from the group consisting of carboxylic acid groups, carboxylic acid derivatives, sulfonic acid groups, sulfonic acid derivatives, phosphonic acid groups, and phosphonic acid derivatives.
- 29. The method of claim 27 wherein the linking compound is selected from the group consisting of di-functional amines, polyfunctional amines, and alcohol group-containing linking compounds.
- 30. A method for preparing an ion-conducting membrane comprising the steps of:
(a) cross-coupling a plurality of dendrimers having acid terminal groups and terminal groups capable of undergoing cross-coupling reactions to form a covalently linked network polymer; and (b) casting the network polymer into a membrane.
- 31. The method of claim 30 wherein the terminal groups capable of undergoing cross-coupling reactions are selected from the group consisting of halide terminal groups and hydroxyl terminal groups.
- 32. The method of claim 30 wherein the cross-coupling occurs through cross-coupling reactions selected from the group consisting of Susuki coupling, Stille coupling, Kumada coupling, and Ulmann coupling.
- 33. A method for preparing an ion-conducting membrane comprising the steps of:
(a) copolymerizing a plurality of dendrimers having acid functional terminal groups and terminal groups capable of undergoing copolymerization reactions to form a covalently linked network polymer; and (b) casting the network polymer into a membrane.
- 34. The method of claim 33 wherein the terminal groups are selected from vinyl, styrene, methacrylates, urethanes, amides, imides, thiophenes, and aryl alkynes.
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This application claims priority to U.S. Provisional Application No. 60/278,979 filed Mar. 27, 2001, the entire disclosure of which is incorporated herein by reference.
GOVERNMENT INTERESTS
[0002] This invention was made with Government support under Contract No. W-31-109-ENG-38 awarded by the Department of Energy. The Government has certain rights in this invention.
Provisional Applications (1)
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Number |
Date |
Country |
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60278979 |
Mar 2001 |
US |