Claims
- 1. A co-substituted linear phosphazene polymer having the formula:
- 2. A co-substituted linear phosphazene polymer according to claim 1, wherein said polymer is capable of functioning as the sole polymer component of a gel electrolyte system having a conductance at room temperature of at least about 10−4 S/cm.
- 3. A co-substituted linear phosphazene polymer according to claim 1, wherein said portion of the R groups that impart ionic conductance to the polymer comprise methoxyethoxyethyoxy groups, and wherein said non-conductive hydrophobic groups that provide the polymer with mechanical stability comprise fluorine-containing moieties.
- 4. A co-substituted linear phosphazene polymer according to claim 2, wherein said portion of the R groups that impart ionic conductance to the polymer comprise methoxyethoxyethyoxy groups, and wherein said non-conductive hydrophobic groups that provide the polymer with mechanical stability comprise fluorine-containing moieties.
- 5. A co-substituted linear phosphazene polymer according to claim 3, wherein said fluorine-containing moieties are selected from the group consisting of —OCH2CF3, —OCH2CH2CF3, —OCH2(CF2)vCF3 (where v is from 1 to about 1,000), —OCH2(CF2)pCF2H (where p is from 0 to about 1,000).
- 6. A co-substituted linear phosphazene polymer according to claim 4, wherein said fluorine-containing moieties are selected from the group consisting of —OCH2CF3, —OCH2CH2CF3, —OCH2(CF2)vCF3(where v is from 1 to about 1,000), —OCH2(CF2)pCF2H (where p is from 0 to about 1,000).
- 7. A co-substituted linear phosphazene polymer according to claim 2, wherein said portion of the R groups that impart ionic conductance to the polymer comprise methoxyethoxyethyoxy groups, and wherein said non-conductive hydrophobic groups that provide the polymer with mechanical stability are selected from the group selected from —OCH2CF3, —OCH2CH2CF3, —OCH2(CF2)vCF3 (where v is from 1 to about 1,000), —OCH2(CF2)pCF2H (where p is from 0 to about 1,000), n-propyl, i-propyl, n-butyl and i-butyl), —OCH2Si(CH3)2 and —(OSi(CH3)2)OSi(CH3)3 (where p is set forth above).
- 8. A co-substituted linear phosphazene polymer having the formula:
- 9. A co-substituted linear phosphazene polymer according to claim 8, wherein said polymer is capable of functioning as the sole polymer component of a gel electrolyte system having a conductance at room temperature of at least about 10−4 S/cm.
- 10. A co-substituted linear phosphazene polymer according to claim 8, wherein said R groups that impart ionic conductance to the polymer comprise methoxyethoxyethyoxy groups, and wherein said non-conductive hydrophobic groups that provide the polymer with mechanical stability comprise fluorine-containing moieties.
- 11. A co-substituted linear phosphazene polymer according to claim 9, wherein said R groups that impart ionic conductance to the polymer comprise methoxyethoxyethyoxy groups, and wherein said non-conductive hydrophobic groups that provide the polymer with mechanical stability comprise fluorine-containing moieties.
- 12. A co-substituted linear phosphazene polymer according to claim 10, wherein said fluorine-containing moieties are selected from the group consisting of —OCH2CF3, —OCH2CH2CF3, —OCH2(CF2)vCF3 (where v is from 1 to about 1,000 and —OCH2(CF2)pCF2H (where p is from 0 to about 1,000).
- 13. A co-substituted linear phosphazene polymer according to claim 11, wherein said fluorine-containing moieties are selected from the group consisting of —OCH2CF3, —OCH2CH2CF3, —OCH2(CF2)vCF3 (where v is from 1 to about 1,000) and —OCH2(CF2)pCF2H (where p is from 0 to about 1,000.
- 14. A co-substituted linear phosphazene polymer according to claim 8, wherein said R groups that impart ionic conductance to the polymer comprise methoxyethoxyethyoxy groups, and wherein said non-conductive hydrophobic groups are selected from the group consisting of n-propyl, i-propyl, n-butyl and i-butyl), —OCH2Si(CH3)2 and —(OSi(CH3)2)pOSi(CH3)3 (where p is set forth above).
- 15. A co-substituted linear phosphazene polymer according to claim 9, wherein said R groups that impart ionic conductance to the polymer comprise methoxyethoxyethyoxy groups, and wherein said non-conductive hydrophobic groups are selected from the group consisting of n-propyl, i-propyl, n-butyl and i-butyl), —OCH2Si(CH3)2 and —(OSi(CH3)2)pOSi(CH33 (where p is set forth above).
- 16. A co-substituted linear phosphazene polymer according to claim 11, wherein said R groups that impart ionic conductance to the polymer comprise from about 20 to about 80 mole % of the side chain groups, and wherein said hydrophobic R′ groups that impart mechanical stability to the polymer comprise from 10 to about 50 mole % of the side chain groups.
- 17. A gel polymer electrolyte system comprising: a co-substituted linear phosphazene polymer component; a small organic molecule additive component to impart ionic conductance to the electrolyte system and to plasticize said polymer component; and a metal salt component to impart ionic conductance to the electrolyte system; said gel electrolyte system having a conductance at room temperature of at least about 10−5 S/cm.
- 18. The gel polymer electrolyte system according to claim 16, wherein said system exhibits a conductance at room temperature of at least about 10−4 S/cm.
- 19. The gel polymer electrolyte system according to claim 14, wherein said co-substituted substituted linear phosphazene polymer component is represented by the formula
- 20. The gel polymer electrolyte system according to claim 16, wherein said system exhibits a conductance at room temperature of at least about 10−4 S/cm, wherein said linear phosphazene polymer component comprises at least about 10 wt% of the gel electrolyte system, wherein said small organic additive component comprises from about 5 to about 75 wt % of the gel electrolyte system, and wherein said metal salt component comprises from about 2.5 to about 15 wt % of the gel electrolyte system.
- 21. The gel polymer electrolyte system according to claim 17, wherein said small organic additive component is selected from the group consisting of alkylene carbonates, lactones, N-methyl pyrrolidone, tetramethylene sulfone, dioxolane, glymes, short chain ethylene oxides, short chain ethylene glycols, cyclic phosphazene trimers and tetramers, alkylphosphates, alkylphosphites, alkylphosphines, dibutyl phthalate, dimethylacetamide, dimethylformamide, hexamethyl phosphoramide, substituted pyridines, crown ethers, kryptands, podands and dioctyl sebacate, and mixtures thereof
- 22. The gel polymer electrolyte system according to claim 19, wherein said metal salt component is selected from the group consisting of salts of lithium, magnesium, sodium, potassium, rubidium, cesium, beryllium, calcium, magnesium, barium, copper and zinc.
- 23. The gel polymer electrolyte system according to claim 22, wherein said metal salt component is selected from the group consisting of lithium trifluoromethanesulfonate, lithium perchlorate, lithium(bistrifluoromethylsulfonyl)imide, lithium fluoride, lithium chloride, lithium bromide, lithium iodide, lithium phosphate, lithium sulfate, lithium carbonate, lithium tetrafluoroborate, lithium hexafluoroarsenate(V), lithium hexafluorophosphate, lithium periodate, lithium trifluoroacetate, lithium amide, lithium hexafluoroantimonate, lithium nitrate, lithium oxide, sodium trifluoromethanesulfonate, magnesium trifluoromethanesulfonate, potassium trifluoromethanesulfonate, barium trifluoromethanesulfonate, zinc trifluoromethanesulfonate, calcium trifluoromethanesulfonate, sodium perclhlorate, lithium perclhlorate, magnesium perclhlorate, magnesium perclhlorate, copper perclhlorate, cesium perclhlorate and beryllium perclhlorate.
- 24. The gel polymer electrolyte system according to claim 21, wherein said metal salt component is selected from the group consisting of salts of lithium, magnesium, sodium, potassium, rubidium, cesium, beryllium, calcium, magnesium, barium, copper and zinc.
- 25. The gel polymer electrolyte system according to claim 24, wherein said metal salt component is selected from the group consisting of lithium trifluaoromethanesulfonate, lithium perchlorate, lithium(bistrifluoromethylsulfonyl)imide, lithium fluoride, lithium chloride, lithium bromide, lithium iodide, lithium phosphate, lithium sulfate, lithium carbonate, lithium tetrafluorob orate, lithium hexafluoroarsenate(V), lithium hexafluorophosphate, lithium periodate, lithium trifluoro acetate, lithium amide, lithium hexafluoroamnimonate, lithium nitrate, lithium oxide, sodium trifluoromethanesulfonate, magnesium trifluoromethanesulfonate, potassium trifluoromethanesulfonate, barium trifluoromethanesulfonate, zinc trifluoromethanesulfonate, calcium trifluorometha-nesulfonate, sodium perclhlorate, lithium perclhlorate, magnesium perclhlorate, magnesium perclhlorate, copper perchlorate, cesium perclhlorate and beryllium perclhlorate.
- 26. The gel polymer electrolyte system according to claim 20, wherein said R groups on said linear polymer chain consist essentially of methoxyethoxyethoxy groups, and said R′ groups on said linear polymer chain consist essentially of trifluoroethoxy groups.
- 27. The gel polymer electrolyte system according to claim 21, wherein said R groups on said linear polymer chain consist essentially of methoxyethoxyethoxy groups, and said R′ groups on said linear polymer chain consist essentially of trifluoroethoxy groups.
- 28. The gel polymer electrolyte system according to claim 22, wherein said R groups on said linear polymer chain consist essentially of methoxyethoxyethoxy groups, and said R′ groups on said linear polymer chain consist essentially of trifluoroethoxy groups.
- 29. The gel polymer electrolyte system according to claim 25, wherein said R groups on said linear polymer chain consist essentially of methoxyethoxyethoxy groups, and said R′ groups on said linear polymer chain consist essentially of trifluoroethoxy groups.
RELATED APPLICATION
[0001] This application is based on Provisional Application Serial No. 60/214,933, filed Jun. 29, 2000, the disclosure of which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60214933 |
Jun 2000 |
US |