Claims
- 1. A compound of the formula ROC6H4SO2NMSO2Rf where R is a C1-C5 alkyl, Rf is a C1-C8 perfluoroalkyl, Li, Na, H, and K, and M is selected from the group consisting of H, Li, K, Na, R′3NH+, or mixtures thereof, where R′ is a C1-C5 alkyl.
- 2. A compound of the formula ROC6H4SO2NR1SO2Rf where R is a C1-C5 alkyl and R1 is selected from the group consisting of Li, H, K and Na, and Rf is a C1-C8 perfluoroalkyl.
- 3. A sulfonimide bearing compound of the formula HOC6H4SO2NR1SO2Rf where R1 is selected from the group consisting of Li, K, H, and Na, and Rf is a C1-C8 perfluoroalkyl. comprising,
reacting ROC6H4SO2Cl where R is a C1-C5 alkyl with RfSO2NH2 where Rf is any C1-C8 perfluoroalkyl, and a base selected from the group consisting of Trimethylamine, Triethylamine, Pyridine, Imidazole, Pyrimidine or mixtures thereof in the presence of a first solvent selected from the group consisting of Acetone, Acetonitrile, N,N-dimethylacetamide, N,N-dimethylformamide, Dimethyl sulfoxide, Hexamethylphosphoramide, Nitromethane, Pyridine, Tetrahydrofuran or mixtures thereof to produce a first intermediate compound of the formula ROC6H4SO2NMSO2Rf where M is R′3NH+, where R′ is a C1-C5 alkyl, reacting the first intermediate compound with an alkali metal salt selected from the group consisting of Lithium methoxide, Lithium ethoxide, Lithium tert-butoxide, Lithium phenolate, Lithium hydroxide, Sodium methoxide, Sodium ethoxide, Sodium tert-butoxide, Sodium phenolate, Sodium hydroxide Potassium methoxide, Potassium ethoxide, Potassium phenolate, Potassium tert-butoxide, Potassium hydroxide or mixtures thereof in the presence of a second solvent selected from the group consisting of Methanol, Ethanol, Isopropanol, tert-Butanol, Acetone, Acetonitrile, N,N-dimethylacetamide, N,N-dimethylformamide, Dimethyl sulfoxide, Hexamethylphosphoramide, Nitromethane, Tetrahydrofuran or mixtures thereof to produce a second intermediate of the formula ROC6H4SO2NMSO2Rf where M is selected from the group consisting of Li, Na and K, Rf is a C1-C8 perfluoroalkyl, and R is a C1-C5 alkyl, reacting the second intermediate with an alkali alkane thiolate selected from the group consisting of sodium ethane thiolate, lithium ethane thiolate, potassium ethane thiolate and mixtures thereof to produce a sulfonimide bearing compound of the formula HOC6H4SO2NMSO2Rf, where M is selected from the group consisting of Li, Na, H and K, and Rf is a C1-C8 perfluoroalkyl.
- 4. An alkali sulfonimide bearing compound of the formula ROC6H4SO2NR1SO2Rf where R and R1 are the same or different and each of R and R1 are selected from the group consisting of Li, Na, H, and K, and Rf is a C1-C8 perfluoroalkyl.
- 5. The alkali sulfonimide bearing compound of claim 4 wherein R and R1 each are Na.
- 6. An amine terminated sulfonimide bearing compound of the formula H2NC6H4SO2NR1SO2Rf where R1 is selected from the group consisting of Li, Na, H, and K, and, Rf is a C1-C8 perfluoroalkyl.
- 7. The amine terminated sulfonimide bearing compound of claim 7 where R1 is Na.
- 8. A method of making an alkali phenoxy sulfonimide functionalized polyphosphazene comprising,
reacting a polyphosphazene of the formula (NPCl2)n, where n≧3 with an alkali oxide derivative selected from the group consisting of sodium p-methyl phenoxide, lithium p-methyl phenoxide, potassium p-methyl phenoxide to produce a first intermediate of the formula [(NP(Cl)x(OC6H4)2-x]n, where n≧3, reacting the first intermediate with a second alkali salt R1OC6H4SO2NR1SO2Rf, where R1 is Li, K, or Na, and where, Rf is a C1-C8 perfluoroalkyl, to produce a second intermediate of the formula such as [NP(OC6H4SO2NR1SO2Rf)x(OC6H4CH3)y(Cl)2-x-y]n, where R1 is Li, Na, or K, and where Rf is a C1-C8 perfluoroalkyl. reacting the second intermediate with a third alkali salt selected from the group consisting of H3CC6H4ONa, NaOC6H5, NaOC6H4CF3, LiOC6H4CH3, LiOC6H5, LiOC6H4CF3, H3CC6H4OK, KOC6H5 and KOC6H4CF3 to produce an alkali phenoxy sulfonimide functionalzied polyphosphazene of the formula such as [NP(OC6H4SO2NR1SO2Rf)x(OC6H4CH3)2-x]n, where, Rf is a C1-C8 perfluoroalkyl, and where R1 is Li, K or Na.
- 10. The method of claim 9 wherein R1 is Na.
- 11. A method of making a phenoxy sulfonimide functionalized polyphosphazene comprising,
reacting polyphosphazene of the formula (NPCl2)n, where n≧3 with R1OC6H4CH3 and R1OC6H4SO2NR1SO2Rf where R1 is selected from the group consisting of Na, K and Li and, Rf is a C1-C8 perfluoroalkyl, to produce a reaction product, and reacting the reaction product with R1OC6H4CH3 where R1 is selected from the group consisting of Na, K, H and Li to produce an alkali phenoxy sulfonimide functionalzied polyphosphazene of the formula [NP(OC6H4SO2NR1SO2Rf)x(OC6H4CH3)2-x]n.
- 12. The method of claim 11 wherein R1 is Na.
- 13. A sulfonimide functionalzied polyphosphazene homopolymer of the formula [NP(OC6H4SO2NR2SO2Rf)2]n where R1 is selected from the group consisting of Li, Na, H and K.
- 14. The homopolymer of claim 13 wherein R1 is Na.
- 15. A method of manufacture of a sulfonmide functionalized polyphosphazene homopolymer of the formula [NP(OC6H4SO2NR1SO2Rf)2]n where R1 is selected from the group consisting of Li, Na, H, and K and, Rf is a C1-C8 perfluoroalkyl, comprising,
reacting (NPCl2)n, where n≧3 with R1OC6H4NR1SO2Rf where R1 is selected from the group consisting of Li, K and Na and, Rf is a C1-C8 perfluoroalkyl, at a temperature of about 60° C. to about 200° C. at a pressure of about ambient to about 12 bar for about 12 hours to about 40 hours.
- 16. The method of claim 15 wherein R1 is Na.
- 17. A phenoxy sulfonimide functionalized polyphosphazene copolymer of the formula [NP(ZR2)x(ZC6H4SO2NR1SO2Rf)2-X]n, where, Rf is a C1-C8 perfluoroalkyl, where R2 is selected from the group consisting of —CH2CH3, —C6H4CH3, —CH2CH2OCH2CH2OCH3, —CH2CH2OTHP, —C6H4COOPr, —CH2CF3, —CH2CF2OCF2CF2OCF3, —C6H4CF3, —C6F5, and mixtures thereof, Z is O or NH, and R1 is selected from the group consisting of Na, Li, H, and K.
- 18. The copolymer of claim 17 wherein R2 is —C6H4CH3, and Z is —O—.
- 19. The copolymer of claim 17 wherein R1 is Na.
- 20. A method of making a phenoxy sulfonimide functionalized polyphosphazene copolymer of the formula [NP(ZR2)x(ZC6H4SO2NR1SO2Rf)2-X]n, where, Rf is a C1-C8 perfluoroalkyl, where R2 is selected from the group consisting of —CH2CH3, —C6H4CH3, —CH2CH2OCH2CH2OCH3, —CH2CH2OTHP where THP is tetrahydropyranl, —C6H4COOPr, —CH2CF3, —CH2CF2OCF2CF2OCF3, —C6H4CF3, —C6F5, Z is O or NH, and R1 is selected from the group consisting of Na, Li and K, comprising,
reacting (PNCl2)n, where n≧3 with a first amount of compound of the formula R3R2 where R3 is selected from the group consisting of —NaO, —LiO, —KO, NH2 or mixtures thereof, R2 is selected from the group consisting of —CH2CH3, —C6H4CH3, —CH2CH2OCH2CH2OCH3, —CH2CH2OTHP where THP is tetrahydropyranyl, —C6H4COOPr, —CH2CF3, —CH2CF2OCF2CF2OCF3, —C6H4CF3, —C6F5, or mixtures thereof, with a second amount of a compound of the formula R2C6H4SO2NHSO2Rf where Rf is a C1-C8 perfluoroalkyl, where R2 is selected from the group consisting of —NaO, —LiO, —KO, NH or mixtures thereof, at a first temperature of about 60° C. to about 200° C. to produce a reaction product, reacting the reaction product with R3R2 at a second temperature of 60° C. to about 200° C. at a pressure of about 3.5-4 bar.
- 21. A haloalkoxy sulfonimide functionalized polyphosphazene of the formula (NP(OCH2(CF2)4H) 2)x (NP(OCH2(CF2)4H)OC6H4SO2NR1SO2Rf)(1-x) where R1 is selected from the group consisting of Na, Li, H, and K, and where Rf is a C1-C8 perfluoroalkyl.
- 22. The haloalkoxy sulfonimide functionalized polyphosphazene of claim 21 where R1 is Na.
- 23. A method of manufacture of haloalkoxy sulfonimide functionalized polyphosphazene of the formula [NP(OCH2(CF2)4H)x (OC6H4SO2NR1SO2Rf)2-x]n where R1 is selected from the group consisting of Na, Li and K and, Rf is a C1-C8 perfluoroalkyl, comprising,
reacting (NPCl2)n, where n≧3 with an alkali fluoroalkoxide selected from the group consisting of NaOCH2(CF2)4H, NaOCH2CF3, NaOCH2CF2OCF2CF2OCF3 LiOCH2(CF2)4H, LiOCH2CF3, LiOCH2CF2OCF2CF2OCF3, KOCH2(CF2)4H, KOCH2CF3, and KOCH2CF2OCF2CF2OCF3 to displace about 50% of the Cl in the (PNCl2)n, where n≧3 to form a first reaction product, reacting the first reaction product with an alkali phenoxy sulfonmide of the formula R1OC6H4SO2NMSO2Rf where Rf is selected from the group consisting of Na, Li and K to produce a second reaction product, reacting the second reaction product with an excess of an alkali fluoroalkoxide selected from the group consisting of NaOCH2(CF2)4H, NaOCH2CF3, NaOCH2CF2OCF2CF2OCF3, LiOCH2(CF2)4H, LiOCH2CF3, LiOCH2CF2OCF2CF2OCF3, KOCH2(CF2)4H, KOCH2CF3, and KOCH2CF2OCF2CF2OCF3 to produce a haloalkoxy sulfonimide functionalized polyphosphazene of the formula [NP(OCH2(CF2)4H)2)x (OC6H4SO2NR1SO2Rf)2-x]n where R1 is selected from the group consisting of Na, Li and K and Rf is a C1-C8 Perfluoroalkyl.
- 24. A blend of sulfonimide functionalized polyphosphazene comprising a sulfonimide funtionalized polyphosphazene and another polymer selected from the group consisting polytetrafluoroethylene (PTFE), polyvinylidene fluoride (PDVF), polyvinylidene fluoride-co-hexafluoropropylene (PVDF-HFP), polystyrene (PS), polybutadiene (BR), polyvinylidene chloride (VDC), polymethyl methacrylate (PMMA), polyvinyl alcohol (PVAL), polyvinyl acetate (PVA), polyphenylene oxide (PPO), polyether ether ketone (PEEK), polyethylene terephthalate (PET), polybutylene terephthalate (PBT), polycarbonate (PC), polyether sulfone, polybenzimidazoles (PBI), polydimethyl siloxane, polyphenylene sulfide (PS), polypyrrole, polyphenylene, polyaniline, poly(bis(pentoxy)phosphazene), poly(bis(phenoxy)phosphazene), poly((methoxyethoxyethoxy)(m-methyl phenoxy)phosphazene), styrene-acrylonitrile copolymers (SAN), Acrylonitrile-butadiene-styrene terpolymers (ABS) and ethylene-methacrylic acid copolymer.
- 25. A blend of claim 23 where the non-phosphazene polymer is polyvinylidene fluoride.
- 26. A composition comprising a sulfonmide functionalized polyphosphazene polymer and an additive selected from the group consisting of examples such as additives such as carbon black, graphite, platinum, rhuthenium, silica, montmorillonite, clay, titanium dioxide, zirconium oxide, phosphoric acid, phosphotungstic acid, silicomolybdic acid, phosphomolybdic acid, salts such as CF3SO2NLiSO2CF3, hexaphenoxycyclotriphosphazene, di(m-methylphenoxy)tetra(trifluoroethoxy)cyclotriphosphazene, plasticizers such as methanol, ethanol and hexane, cross-linkers such as diamines.
- 27. A membrane comprising a sulfonimide functionalized polyphosphazene of the formula [NP(OC6H4SO2NR1SO2Rf)x(OC6H4CH3)2-x]n, where R1 is Li, Na, K, or H and Rf is a C1-C8 perfluoroalkyl.
- 28. A membrane comprising a sulfonmide functionalized polyphosphazene of the formula [NP(ZR2)x(ZC6H4SO2NR1SO2R3)2-x]n, where R1 is Li, Na, K, or H, Z is O or NH, and R2 is an alkyl, aryl, fluorinated alky, perfluorinated alkyl, fluorinated aryl, functionalized alkyl or functionalized aryl and Rf is a C1-C8 perfluoroalkyl.
- 29. The membrane of claim 26 wherein the polyphosphazene is cross linked.
- 30. The membrane of claim 27 wherein the polyphosphazene is cross linked.
- 31. The membrane of claim 28 wherein the polyphosphazene is cross linked.
- 32. A fuel cell comprising a membrane of a polyphosphazene of the formula [NP(ZR2)x(ZC6H4SO2NR1SO2Rf)2-X]n, where R1 is Li, Na, K, or H, Z is O or NH, and R2 is an alkyl, aryl, fluorinated alkyl, perfluorinated alkyl, flourinated aryl, functionalized alkyl or functionalized aryl, Rf is a C1-C8 perfluoroalkyl, and where the polyphosphazene is cross linked or uncross-linked.
- 33. A fuel cell comprising a membrane of a polyphosphazene of the formula [NP(OC6H4SO2NR1SO2Rf)x(OC6H4CH3)2-x]n, where Rf is a C1-C8 perfluoroalkyl, where the polyphosphazene is cross linked.
- 34. A method of making a lithiated phenoxy sulfonimide functionalized polyphosphazene [NP(OR5)x(OC6H4SO2NLiSO2Rf)2-x]n where Rf is a C1-C8 perfluoroalkyl and where R5 is an oligo-oxy substituent selected from the group consisting of —CH2CH2OCH2CH2OCH3, —CH2CF2OCF2CF2OCF3, —CH2CH2OCH2CH2OCH2CH2OCH3 comprising, forming an aqueous, acidic solution of [NP(OR5)x(OC6H4SO2NHSO2Rf)2-x]n and subjecting the solution to dialysis against a LiCl solution.
- 35. The method of making the copolymer in claim 34 where R5 is —OCH2CH2OCH2CH2OCH3 and the polyphosphazene has the formula [NP(OCH2CH2OCH2CH2OCH3)x(OC6H4SO2NLiSO2Rf)2-x]n where Rf is a C1-C8 perfluoroalkyl.
Parent Case Info
[0001] This application claims priority to U.S. patent application 60/450,178 filed Feb. 13, 2003.
GOVERNMENT SPONSORSHIP
[0002] This work was supported by U.S. Department of Energy, grant number DE-FC36-01GO11085.
Provisional Applications (1)
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Number |
Date |
Country |
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60450178 |
Feb 2003 |
US |