Claims
- 1. A Lewis acid-containing polymer comprising repeat units having the formula:
- 2. The polymer of claim 1 wherein X is aluminum or boron.
- 3. The polymer of claim 1 wherein X is boron.
- 4. The polymer of claim 1 wherein Y1 is selected from the group comprising aryl, phenyl, R-substituted phenyl, allyl, R-substituted alkyl, alkoxy and R-substituted alkoxy wherein R is halo, alkyl, alkoxy, alkylene glycol or phenyl.
- 5. The polymer of claim 1 wherein Y1 is selected from the group comprising phenyl and fluoro-substituted phenyl.
- 6. The polymer of claim 1 wherein Y1 is alkoxy-oligo(alkylene glycol).
- 7. The polymer of claim 6 wherein Y1 is selected from the group comprising poly[methoxy-oligo(ethylene glycol)m and poly[butoxy-oligo (propylene glycol)m wherein m is from 1 to about 50.
- 8. The polymer of claim 1 wherein Z is chosen from the group comprising alkyl, R-substituted alkyl, alkoxy and R-substituted alkoxy wherein R is selected from the group comprising hydrogen, halo, alkyl, alkoxy, phenyl and substituted phenyl.
- 9. The polymer of claim 8 wherein Z is a polyether having the formula [O(CR2)aCR2]n wherein a is zero to about 20, n is from about 2 to 100 and R is halo, alkyl or phenyl.
- 10. The polymer of claim 9 wherein n is about 2 to 25.
- 11. The polymer of claim 9 wherein Z is oligo(ethylene glycol)n or oligo(propylene glycol)n wherein n is 2 to about 50.
- 12. The polymer of claim 1 wherein Z is a polysiloxane.
- 13. The polymer of claim 9 wherein Z is a polysiloxane having the formula Si [(CR3)2]—O(CR2CR2O)n wherein n is 2 to about 50 and R is hydrogen or alkyl.
- 14. The polymer of claim 1 wherein X is boron, Y1 is phenyl, alkyl or alkoxy and Z is [O(CR2)aCR2])n wherein n is from 2 to about 100, a is zero to about 20 and R is hydrogen, halo, alkyl or R-substituted alkyl wherein R is halo, alkyl or phenyl.
- 15. A polymer of claim 1 selected from the group comprising poly[methoxy-oligo(ethylene glycol)m oligo(ethylene glycol), borate, poly[methoxy oligo(ethylene glycol)m oligo(propylene glycol)n borate and poly[butoxy-oligo(propylene glycol)m oligo(ethylene glycol)n borate] wherein m is 1 to about 12 and n is about 2-17.
- 16. The polymer of claim 1 as a precursor in the formation of a conductive polyanionic polymer.
- 17. A polyanionic polymer comprising the Lewis acid-containing polymer of claim 1 and a salt of a Lewis base.
- 18. The polyanionic polymer of claim 17 wherein said salt comprises an anionic Lewis base selected from the group comprising bis(trifluoromethanesulfonyl)imide, trifluoromethanesulfonate, thiocyanate, cyanide, methoxide, 2,2,2-trifluoroethoxide, sulfide and phenyl anion and a cation selected from the group lithium and sodium.
- 19. A polyanionic polymer chain comprising repeat units having the formula:
- 20. The polyanionic polymer of claim 19 wherein X is aluminum or boron.
- 21. The polyanionic polymer of claim 19 wherein X is boron.
- 22. The polyanionic polymer of claim 19 wherein Y1 is selected from the group comprising aryl, phenyl, R-substituted phenyl, alkyl, R-substituted alkyl, alkoxy and R-substituted alkoxy wherein R is halo, alkyl, alkoxy, alkylene glycol or phenyl.
- 23. The polyanionic polymer of claim 19 wherein Y1 is selected from the group comprising phenyl and fluoro-substituted phenyl.
- 24. The polyanionic polymer of claim 19 wherein Y1 is alkoxy-oligo(alkylene glycol).
- 25. The polyanionic polymer of claim 19 wherein Y1 is selected from the group comprising poly[methoxy-oligo(ethylene glycol)m and poly[butoxy-oligo(propylene glycol)m wherein m is from 1 to about 50.
- 26. The polyanionic polymer of claim 19 wherein Y2 is selected from the group comprising alkyl, aryl, phenyl, R-substituted phenyl, imide, R-substituted imide, R-substituted sulfonate, alkoxide, R-substituted alkoxide, thiocyanate, cyanide, R-substituted cyanide, sulfide and polysulfide, wherein R is hydrogen, alkyl, sulfonyl, or halo preferably fluoro.
- 27. The polyanionic polymer of claim 19 wherein Y2 is selected from the group comprising bis(trifluoromethanesulfonyl)imide, trifluoromethanesulfonate, thiocyanate, cyanide, methoxide, 2,2,2-trifluoroethoxide, sulfide and phenyl anion.
- 28. The polyanionic polymer of claim 19 wherein Y2 is a strong Lewis base and is selected from the group comprising methoxide, 2,2,2-trifluoroethoxide, sulfide and phenyl anion.
- 29. The polyanionic polymer of claim 19 wherein Y2 is a weak Lewis base and is selected from the group comprising bis(trifluoromethanesulfonyl)imide, trifluoromethanesulfonate.
- 30. The polyanionic polymer of claim 19 wherein Z is chosen from the group comprising alkyl, R-substituted alkyl, alkoxy and R-substituted alkoxy wherein R is selected from the group comprising hydrogen, halo, alkyl, alkoxy, phenyl and substituted phenyl.
- 31. The polyanionic polymer of claim 30 wherein Z is a polyether having the formula [O(CR2)aCR2]n wherein a is zero to about 20, n is from about 2 to 100 and R is halo, alkyl or phenyl.
- 32. The polyanionic polymer of claim 30 wherein n is about 2 to 20.
- 33. The polyanionic polymer of claim 30 wherein Z is oligo(ethylene glycol)n or oligo(propylene glycol)n wherein n is 2 to about 50.
- 34. The polyanionic polymer of claim 19 wherein Z is a polysiloxane.
- 35. The polyanionic polymer of claim 34 wherein Z is a polysiloxane having the formula Si [(CR3)2]—O(CR2CR2O)n wherein n is 2 to about 50 and R is hydrogen or alkyl.
- 36. The polyanionic polymer of claim 19 wherein X is boron, Y1 is phenyl, alkyl or alkoxy and Z is [O(CR2)aCR2]n wherein n is from 2 to about 100, a is zero to about 20 and R is hydrogen, halo, alkyl or R-substituted alkyl wherein R is halo, alkyl or phenyl, M+ is lithium or sodium and Y2 is selected from the group comprising bis(trifluoromethanesulfonyl)imide, trifluoromethanesulfonate, thiocyanate, cyanide, methoxide, 2,2,2-trifluoroethoxide, sulfide and phenyl anion.
- 37. A polyanionic polymer of claim 19 selected from the group comprising poly[methoxy-oligo(ethylene glycol)m oligo(ethylene glycol)n bis(trifluoromethanesulfonyl)imido borate], poly[methoxy-oligo(ethylene glycol)m oligo(propylene glycol)n bis(trifluoromethanesulfonyl)imido borate] and poly[butoxy-oligo(propylene glycol)m oligo(ethylene glycol)n bis(trifluoromethanesulfonyl)imido borate] wherein m is 1 to about 12 and n is 2 to about 17 and having a counter ion lithium or sodium.
- 38. A polyanionic polymer of claim 19 selected from the group comprising poly[methoxy-oligo(ethylene glycol)m oligo(ethylene glycol)n trifluoromethanesulfonato borate], poly[methoxy-oligo(ethylene glycol)m oligo(propylene glycol)m trifluoromethanesulfonato borate] and poly[butoxy-oligo(propylene glycol)m oligo(ethylene glycol)n trifluoromethanesulfonato borate] wherein m is 1 to about 12 and n is 2 to about 17 and having a counter ion of lithium or sodium.
- 39. A polyanionic polymer of claim 19 selected from the group comprising poly[methoxy-oligo(ethylene glycol)m oligo(ethylene glycol)n thiocyanato borate], poly[methoxy-oligo(ethylene glycol)m oligo(propylene glycol)n thiocyanato borate] and poly[butoxy-oligo(propylene glycol)m oligo(ethylene glycol)n thiocyanato borat] wherein m is 1 to about 12 and n is 2 to about 17 and having a counter ion of lithium or sodium.
- 40. A polyanionic polymer of claim 19 selected from the group comprising poly[methoxy-oligo(ethylene glycol)m oligo(ethylene glycol)n cyanido borate], poly[methoxy-oligo(ethylene glycol)m oligo(propylene glycol)n cyanido borate] and poly[butoxy-oligo(propylene glycol)m oligo(ethylene glycol)n cyanido borate] wherein m is 1 to about 12 and n is 2 to about 17 and having a counter ion of lithium or sodium.
- 41. A polyanionic polymer of claim 19 selected from the group comprising poly[methoxy-oligo(ethylene glycol)m oligo(ethylene glycol)n methoxy borate], poly[methoxy-oligo(ethylene glycol)m oligo(propylene glycol)n methoxy borate] and poly[butoxy-oligo(propylene glycol)m oligo(ethylene glycol)n methoxy borate] wherein m is 1 to about 12 and n is 2 to about 17 and having a counter ion of lithium or sodium.
- 42. A polyanionic polymer of claim 19 selected from the group comprising poly[methoxy-oligo(ethylene glycol)m oligo(ethylene glycol)n (2,2,2-trifluoroethoxy) borate], poly[methoxy-oligo(ethylene glycol)m oligo(propylene glycol)n (2,2,2-trifluoroethoxy) borate] and poly[butoxy-oligo(propylene glycol)m oligo(ethylene glycol)n (2,2,2-trifluoroethoxy) borate] wherein m is 1 to about 12 and n is 2 to about 17 and having a counter ion of lithium or sodium.
- 43. A polyanionic polymer of claim 19 selected from the group comprising poly[methoxy-oligo(ethylene glycol)m oligo(ethylene glycol)n phenyl borate], poly[methoxy-oligo(ethylene glycol)m oligo(propylene glycol)n phenyl borate] and poly[butoxy-oligo(propylene glycol)m oligo(ethylene glycol)n phenyl borate] wherein m is 1 to about 12 and n is 2 to about 17 and having a counter ion of lithium.
- 44. A polyanionic polymer of claim 19 selected from the group comprising poly[methoxy-oligo(ethylene glycol)m oligo(ethylene glycol)n sulfido borate], poly[methoxy-oligo(ethylene glycol)m oligo(propylene glycol)n sulfido borate] and poly[butoxy-oligo(propylene glycol)m oligo(ethylene glycol)n sulfido borate] wherein m is 1 to about 12 and n is 2 to about 17 and having a counter ion of lithium.
- 45. A method of making a polyanionic conductive polymer comprising:
(a) supplying a Lewis acid-containing polymer of claim 1;(b) supplying a salt of a Lewis base; and (c) combining said Lewis acid-polymer and said Lewis base salt under conditions whereby said Lewis base anion combines or associates with said Lewis acid-containing polymer to form a polyanionic polymer.
- 46. The method of claim 45 wherein said salt comprises a Group I metal ion.
- 47. The method of claim 46 wherein said metal ion is lithium.
- 48. A conductive polyanionic polymer formed by the method of claim 45.
- 49. A method for forming a polyanionic polymer of claim 19 comprising combining:
a. a precursor Lewis acid-containing polymer having the formula [AL]p wherein
A is a Lewis acid having the formula 5 wherein
X is a Group m element; Y1 is a ligand bound to X; O is a ligand bound to X and to the polymer chain L; L is a polymeric chain chemically linked to a ligand in said Lewis Acid and wherein L comprises a determined number of spacer groups and has the formula: L=(Z)n wherein
Z is a spacer group; and n is the number of each said spacer groups and wherein Z is the same or different in each occurrence; and p is the number of repeat unites in the polymer. b. the salt of a Lewis base having the formula M+kY2, wherein
Y2 is an anionic Lewis base capable of combining or associating with X and wherein Y2 is the same or different from Y1; M+ is a cation or cationic group. under conditions whereby Y2 combines or associates with X and M+k becomes a counter ion weakly bound to said polyanionic polymer.
- 50. The method of claim 49 wherein said supplied Lewis base is capable of binding strongly to said Lewis acid-containing polymer.
- 51. The method of claim 49 wherein said supplied Lewis base is capable of weakly associating with said Lewis acid-containing polymer.
- 52. Conductive polyanionic polymers made by the method of claim 49.
- 53 The method of claim 49 wherein:
X is boron, O are each oxygen, Y1 is selected from the group comprising phenyl, R-substituted phenyl, alkyl, R-substituted alkyl, alkoxy and R-substituted alkoxy wherein R is halo, alkyl, alkoxy, alkylene glycol or phenyl. Y2 is an anionic Lewis base is selected from the group comprising bis(trifluoromethanesulfonyl)imide, trifluoromethanesulfonate, thiocyanate, cyanide, methoxide, 2,2,2-trifluoroethoxide, sulfide and phenyl anion; and M+ is lithium. Z is chosen from the group comprising alkyl, R-substituted alkyl, alkoxy and R-substituted alkoxy wherein R is selected from the group comprising hydrogen, halo, alkyl, alkoxy, phenyl and substituted phenyl.
- 54. A method for forming a Lewis acid-containing polymer of claim 1 comprising combining:
(a) Lewis acid group comprising a Group III element coordinated to three ligands wherein one said ligand is Y1; and (b) a polymeric group having a reactive group capable of reacting with said non-Y1 ligands, and wherein said polymer comprises repeating spacer groups Z; under conditions whereby said non-Y1 ligands and the reactive group react to form the Lewis acid-containing polymer and a small molecule.
- 55 The method of claim 54 wherein said Lewis acid group is a boronic acid comprising two hydroxyl groups and a ligand Y1, said reactive group in said polymeric group is hydroxyl, said repeating spacer groups are alkoxy and wherein said hydroxyls and said reactive group combine to form said Lewis acid-containing polymer and water.
- 56. The method of claim 54 wherein ligand Y1 is phenyl, alkyl or R-substituted alkyl wherein R is hydrogen, halo, alkyl or alkoxy and the repeating spacer groups are glycols selected from the group comprising ethylene glycol, propylene glycol, and R substituted glycols wherein R is alkyl, alkoxy or aryl.
- 57. A method of preparing the Lewis acid-containing polymers of claim 3 comprising:
(a) combining boric acid with an Y1 group comprising a reactive group, under conditions whereby one boric acid molecule reacts with one said reactive group to form a tri-coordinated boronic acid intermediate having one Y1 ligand and two hydroxyls; (b) contacting said intermediate with polyalkylene glycol under conditions whereby said intermediate and said polyalkylene glycol react to form said polymer and water.
- 58. Polymers prepared by the method of claim 57 wherein Y1 comprises an alkoxy group and has the formula —O(CR2CR2)nOCR3 wherein R is hydrogen or alkyl.
- 59. Polymers prepared by the method of claim 57 wherein said polyalkylene glycol comprise spacer groups of the formula —(OCR2CR2)n wherein n is 1-50.
- 60. The polyanionic polymer of claim 19 comprising in addition a polymeric compound selected from the group comprising a chain polymer, a polymer network or a block co-polymer.
- 61. The polyanionic polymer of claim 19 affixed to a solid matrix surface.
- 62. The polyanionic polymer of claim 19 formed into a film.
- 63. A polyanionic polymeric network comprising the cross-linked polymer of claim 19.
- 64. A polyanionic polymeric network of claim 63 formed by contacting chain polymers of claim 19 with lithium boron hydride under conditions whereby cross-linking between said chains occurs.
- 65. The polyanionic polymeric compound of claim 19 in a solvent selected from the group comprising tetrahydrofuran, acetonitrile, and acetone.
- 66. The polyanionic polymer of claim 19 comprising in addition a plasticizer.
- 67. The polyanionic polymer of claim 66 wherein said plasticizer is a carbonate plasticizer selected from the group comprising ethylene carbonate, propylene carbonate, butylene carbonate, dimethyl carbonate, and diethyl carbonate.
- 68. The polyanionic polymer of claim 66 wherein said plasticizer is a non-carbonate plasticizer selected from the group comprising dimethylsulfoxide, dimethyl sulfone, ethylmethylsulfone, butyrolactone, 1,2-dimethoxyethane, and 1,2-diethoxyethane.
- 69. The polyanionic polymer of claim 66 wherein said plasticizer is a mixture of carbonate plasticizers selected from the group comprising ethylene carbonate and propylene carbonate, dimethyl carbonate, and diethyl carbonate.
- 70. The polyanionic cross-linked chain polymer of claim 63 comprising in addition a plasticizer selected from the group comprising carbonate plasticizer selected from the group comprising ethylene carbonate, propylene carbonate, butylene carbonate, dimethyl carbonate, diethyl carbonate, and non-carbonate plasticizer selected from the group containing dimethylsulfoxide, dimethylsulfone, ethyhnethylsulfone, butyrolactone, 1,2-dimethoxyethane, and 1,2-diethoxyethane.
- 71. The polyanionic polymer of claim 70 wherein said plasticizer is a mixture of carbonate plasticizers selected from the group comprising ethylene carbonate and propylene carbonate, dimethyl carbonate and diethyl carbonate.
- 72. A solid polymeric electrolyte comprising a polyanionic polymer of claim 19.
- 73. A solid polymeric electrolyte comprising a polyanionic polymer of claim 62.
- 74. A solid polymeric electrolyte comprising a polyanionic polymer of claim 65.
- 75. A solid polymeric electrolyte comprising a polyanionic polymer of claim 66.
- 76. A solid polymeric electrolyte comprising a polyanionic polymer of claim 70.
- 77. The polyanionic polymer of claim 19 in an electrochemical cell.
- 78. The polyanionic polymer of claim 19 in a lithium battery.
Parent Case Info
[0001] This application claims priority rights based on U.S. Provisional Applications No. 60/212,230, filed Jun. 16, 2000 and No. 60/290,864 filed May 14, 2001. The above-identified provisional applications are hereby incorporated by reference.
Government Interests
[0002] Financial assistance for this project was provided by U.S. Government through the National Science Foundation under Grant Number CHE-9808678 and the Department of Energy under Grant Nos. DEFG0393ER14378-003 and DEFG0395ER45541. Therefore the United States Government may own certain rights to this invention.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/US01/19338 |
6/16/2001 |
WO |
|