Claims
- 1. A block copolymer comprising:(i) at least one block A, wherein A comprises a block of polymerized alkyl methacrylate monomer(s), and (ii) a block B, wherein B comprises a block of polymerized conjugated alkadienes, with the proviso that from 50 to 100% by weight of the monomers used in forming block A are C12-C30 alkyl methacrylates.
- 2. The block copolymer of claim 1 wherein the block copolymer has a molecular weight distribution of between 1.0 and 5.0.
- 3. The block copolymer of claim 1 wherein from 50 to 100% by weight of the monomers used in forming block B are conjugated alkadienes.
- 4. The block copolymer of claim 1 wherein from 90 to 100% by weight of the monomers used in forming block B are conjugated alkadienes.
- 5. The block copolymer of claim 1 wherein said conjugated alkadienes comprise at least one monomer selected from the group consisting of butadiene and isoprene.
- 6. The block copolymer of claim 1 wherein from 80 to 100% by weight of the monomers used in forming block A are C12-C30 alkyl methacrylates.
- 7. The block copolymer of claim 1 wherein said C12-C30 alkyl methacrylate comprises lauryl methacrylate.
- 8. The block copolymer of claim 1 wherein from 95 to 100% by weight of the monomer used in forming block A is lauryl methacrylate and wherein from 95 to 100% by weight of the monomer used in forming block B is isoprene.
- 9. A lubricating oil composition comprising an oil of lubricating viscosity and the block copolymer of claim 1.
- 10. A composition of matter comprising the block copolymer of claim 1 wherein said composition is selected from the group consisting of coatings, adhesives, structural plastics and elastomers.
- 11. A hydrogenated block copolymer obtained by hydrogenating the block copolymer of claim 1.
- 12. The hydrogenated block copolymer of claim 11 wherein the block copolymer is selectively hydrogenated.
- 13. The hydrogenated block copolymer of claim 12 wherein the block copolymer is hydrogenated by solution or bulk catalytic methods selected from the group consisting of tris (triarylphosphinyl) rhodium chloride catalysts, diimide hydrogenation and heterogeneous catalysis.
- 14. The hydrogenated block copolymer of claim 13 wherein the block copolymer is hydrogenated using supported palladium catalysts.
- 15. A process for preparing A-B block copolymers comprising:(i) in a reactor, anionically polymerizing a conjugated diene monomer with an initiator, I, in a non-polar solvent to form a reaction mixture comprising a living polymer of the formula B-I and the non-polar solvent; wherein the initiator, I, comprises R-M in which M is an alkali metal or an alkaline earth metal and R is a straight-chain or branched alkyl or cyclo-alkyl preferably having from 1 to 6 carbon atoms, an aryl or an alkylaryl; wherein B represents the polyalkadiene formed from the polymerization of the diene monomer; and wherein the polymerization is conducted at a temperature of from 20 to 70° C.; (ii) reducing the temperature of the reaction mixture formed in step i) to between −10 and 20° C. and adding to said reaction mixture a protecting group monomer and from 5 to 50% by weight, relative to the non-polar solvent, of a polar solvent; (iii) allowing the reaction mixture formed in step ii) to react for a time sufficient to allow the protecting group monomer to react with the living polymer B-I; (iv) lowering the temperature of the reaction mixture formed in step iii), if necessary, to between 0 and −78° C.; and (v) adding alkyl methacrylate monomer(s) to said reaction mixture to form an A-B block copolymer; wherein A represents the polymer obtained by the polymerization of the alkyl methacrylate monomer(s); and wherein from 50 to 100% of the monomers used in forming block A are C12-C30 alkyl methacrylates; with the proviso that a lithium salt is added to the reactor during any of steps i), ii), iii) or iv).
- 16. The process for preparing A-B block copolymers of claim 15 wherein from 50 to 100% by weight of the monomers used in forming block B are conjugated alkadienes.
- 17. The process for preparing A-B block copolymers of claim 15 wherein from 90 to 100% by weight of the monomers used in forming block B are conjugated alkadienes.
- 18. The process for preparing A-B block copolymers of claim 15 wherein said conjugated alkadienes comprise at least one monomer selected from the group consisting of butadiene and isoprene.
- 19. The process for preparing A-B block copolymers of claim 15 wherein from 80 to 100% by weight of the monomers used in forming block A are C12-C30 alkyl methacrylates.
- 20. The process for preparing A-B block copolymers of claim 15 wherein said C12-C30 alkyl methacrylate comprises lauryl methacrylate.
- 21. The process for preparing A-B block copolymers of claim 15 wherein from 95 to 100% by weight of the monomer used in forming block A is lauryl methacrylate and wherein from 95 to 100% by weight of the monomer used in forming block B is isoprene.
- 22. The process of claim 15 wherein said initiator comprises sec-butyl lithium.
- 23. The process of claim 15 wherein said lithium salt is selected from at least one member of the group consisting of lithium chloride and lithium alkoxides.
- 24. The process of claim 23 wherein said lithium salt comprises lithium chloride.
- 25. An A-B block copolymer obtained by the process of claim 15.
- 26. A lubricating oil composition comprising an oil of lubricating viscosity and the A-B block copolymer of claim 25.
- 27. A composition of matter comprising the A-B block copolymer of claim 25 wherein said composition is selected from the group consisting of coatings, adhesives, structural plastics and elastomers.
- 28. A hydrogenated block copolymer obtained by hydrogenating the A-B block copolymer of claim 25.
- 29. The hydrogenated block copolymer of claim 28 wherein the A-B block copolymer is selectively hydrogenated.
- 30. The hydrogenated block copolymer of claim 29 wherein the A-B block copolymer is hydrogenated by solution or bulk catalytic methods selected from the group consisting of tris (triarylphosphinyl) rhodium chloride catalysts, diimide hydrogenation and heterogeneous catalysis.
- 31. The hydrogenated block copolymer of claim 30 wherein the A-B block copolymer is hydrogenated using supported palladium catalysts.
- 32. A process for preparing A-B-A block copolymers comprising:(i) in a reactor, anionically polymerizing a conjugated diene monomer with an initiator, I, in a non-polar solvent to form a reaction mixture comprising a living polymer of the formula I-B-I and the non-polar solvent; wherein the initiator, I, comprises a difunctional alkali metal alkyl-initiator; wherein B represents the polyalkadiene formed from the polymerization of the diene monomer; and wherein the polymerization is conducted at a temperature of from 20 to 70° C.; (ii) reducing the temperature of the reaction mixture formed in step i) to between −10 and 20° C. and adding to said reaction mixture a protecting group monomer and from 5 to 50% by weight, relative to the non-polar solvent, of a polar solvent; (iii) allowing the reaction mixture formed in step ii) to react for a time sufficient to allow the protecting group monomer to react with the living polymer I-B-I; (iv) lowering the temperature of the reaction mixture formed in step iii), if necessary, to between 0 and −78° C.; and (v) adding alkyl methacrylate monomer(s) to said reaction mixture to form an A-B-A block copolymer; wherein A represents the polymer obtained by the polymerization of the alkyl methacrylate monomer(s); and wherein from 50 to 100% of the monomers used in forming block A are C12-C30 alkyl methacrylates; with the proviso that a lithium salt is added to the reactor during any of steps i), ii), iii) or iv).
- 33. The process for preparing A-B-A block copolymers of claim 32 wherein from 50 to 100% by weight of the monomers used in forming block B are conjugated alkadienes.
- 34. The process for preparing A-B-A block copolymers of claim 32 wherein from 90 to 100% by weight of the monomers used in forming block B are conjugated alkadienes.
- 35. The process for preparing A-B-A block copolymers of claim 32 wherein said conjugated alkadienes comprise at least one monomer selected from the group consisting of butadiene and isoprene.
- 36. The process for preparing A-B-A block copolymers of claim 32 wherein from 80 to 100% by weight of the monomers used in forming block A are C12-C30 alkyl methacrylates.
- 37. The process for preparing A-B-A block copolymers of claim 32 wherein said C12-C30 alkyl methacrylate comprises lauryl methacrylate.
- 38. The process for preparing A-B-A block copolymers of claim 32 wherein from 95 to 100% by weight of the monomer used in forming block A is lauryl methacrylate and wherein from 95 to 100% by weight of the monomer used in forming block B is isoprene.
- 39. The process of claim 32 wherein said initiator comprises sec-butyl lithium.
- 40. The process of claim 32 wherein said lithium salt is selected from at least one member of the group consisting of lithium chloride and lithium alkoxides.
- 41. The process of claim 40 wherein said lithium salt comprises lithium chloride.
- 42. An A-B-A block copolymer obtained by the process of claim 32.
- 43. A lubricating oil composition comprising an oil of lubricating viscosity and the A-B-A block copolymer of claim 42.
- 44. A composition of matter comprising the A-B-A block copolymer of claim 42 wherein said composition is selected from the group consisting of coatings, adhesives, structural plastics and elastomers.
- 45. A hydrogenated block copolymer obtained by hydrogenating the A-B-A block copolymer of claim 42.
- 46. The hydrogenated block copolymer of claim 45 wherein the A-B-A block copolymer is selectively hydrogenated.
- 47. The hydrogenated block copolymer of claim 46 wherein the A-B-A block copolymer is hydrogenated by solution or bulk catalytic methods selected from the group consisting of tris (triarylphosphinyl) rhodium chloride catalysts, diimide hydrogenation and heterogeneous catalysis.
- 48. The hydrogenated block copolymer of claim 47 wherein the A-B-A block copolymer is hydrogenated using supported palladium catalysts.
Parent Case Info
This application claims the benefit of U.S. Provisional Patent application Ser. No. 60/110,147, filed Nov. 30, 1998.
US Referenced Citations (12)
Foreign Referenced Citations (2)
Number |
Date |
Country |
0 298 667 |
Jan 1989 |
EP |
0 408 420 |
Jan 1991 |
EP |
Provisional Applications (1)
|
Number |
Date |
Country |
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60/110147 |
Nov 1998 |
US |