Claims
- 1. An (A)(B) or a (B)(A)(B) amphiphilic block copolymer wherein
(A) is a linear hydrophilic polymer or oligomer, (B) is a random hyperbranched polymer or oligomer, and wherein said block copolymer is completely or partially terminated with lipophilic groups.
- 2. An amphiphilic block copolymer according to claim 1 in which component (A) is derived from a mono or di-functional homopolymer, block copolymer, random copolymer or alternating copolymer selected from the group consisting of the poly(acrylate)s, poly(methacrylate)s, polyesters, poly(alkylene diol)s, poly(alkylene diol) monoalkyl ethers, poly(aryl ether)s, poly(vinyl alcohol)s, poly(acrylamide)s, poly(urea)s, poly(urethane)s, poly(methacrylamide)s, poly(ethylene imine)s, poly(vinyl ether)s, poly(vinyl ester)s, poly(epichlorohydrin), poly(glycidyl ether)s, poly(glycidyl ester)s, poly(carbonate)s, poly(thio ether)s, poly(thio ester)s, poly(alkyl sulfone)s, poly(aryl sulfone)s,poly(amino acid)s, polyamides, epoxy resins, novolac resins and quaternary ammonium polyacrylates and polyamines.
- 3. An amphiphilic block copolymer according to claim 2 in which component (A) is derived from a linear homopolymer with an {overscore (M)}n between 300 and 500,000 daltons.
- 4. An amphiphilic block copolymer according to claim 2 in which component (A) is derived from a linear homopolymer with an {overscore (M)}n between 300 and 5,000 daltons and which is selected from the group consisting of the poly(acrylate)s, poly(methacrylate)s, poly(alkylene diol)s, poly(alkylene diol) monoalkyl ethers, poly(aryl ether)s, poly(acrylamide)s, poly(methacrylamide)s, poly(ethylene imine)s, poly(vinyl ether)s and poly(vinyl ester)s.
- 5. An amphiphilic block copolymer according to claim 4 in which component (A) is derived from the group consisting of poly(ethylene glycol)s, poly(propylene glycol)s, poly(ethylene glycol) monoalkyl ethers and poly(propylene glycol) monoalkyl ethers.
- 6. An amphiphilic (A)(B) block copolymer according to claim 5 in which component (A) is derived from a poly(ethylene glycol) monoalkyl ether.
- 7. An amphiphilic block copolymer according to claim 1 wherein hyperbranched component (B) is derived from at least one multi-functional monomer wherein said monomer or monomers have one reactive group (b) and two or more reactive groups (c) and wherein reactive groups (b) and (c) are reactive with each other under condensation conditions.
- 8. An amphiphilic block copolymer according to claim 7 wherein hyperbranched component (B) is a random copolymer or cooligomer derived from at least two different monomers.
- 9. An amphiphilic block copolymer according to claim 7 wherein hyperbranched component (B) is derived from at least one multi-functional monomer wherein said monomer or monomers have one group (b) and two groups (c) wherein (b) is a carboxylic acid group and (c) is a hydroxyl group.
- 10. An amphiphilic block copolymer according to claim 9 wherein one of said monomers is dimethylolpropionic acid.
- 11. An amphiphilic block copolymer according to claim 8 wherein hyperbranched component (B) is derived from dimethylolpropionic acid and α,α-bis(hydroxymethyl)butyric acid.
- 12. An amphiphilic block copolymer according to claim 7 wherein the ratio of monomer units of each component (B) to the polymer or oligomer component (A) is from about 1 to 1 to about 100 to 1.
- 13. An amphiphilic block copolymer according to claim 1 in which the terminal lipophilic groups are independently straight or branched chain alkyl of 1 to 100 carbon atoms, straight or branched chain alkenyl of 1 to 100 carbon atoms, straight or branched chain alkynyl of 1 to 100 carbon atoms, cycloalkyl of 5 to 12 carbon atoms, polycycloalkyl of 14 to 112 carbon atoms, phenylalkyl of 7 to 15 carbon atoms, phenylalkenyl of 7 to 15 carbon atoms or phenylalkynyl of 7 to 15 carbon atoms.
- 14. An amphiphilic block copolymer according to claim 13 in which the terminal lipophilic groups are independently straight or branched chain alkyl of 14 to 22 carbon atoms, straight or branched chain alkenyl of 14 to 22 carbon atoms or straight or branched chain alkynyl of 14 to 22 carbon atoms.
- 15. An amphiphilic block copolymer according to claim 14 in which the terminal lipophilic groups are derived from myristic acid, stearic acid, isostearic acid or behenic acid.
- 16. An amphiphilic (A)(B) block copolymer according to claim 1 in which component (A) is derived from poly(ethylene glycol) monomethyl ether which has a {overscore (M)}n between 300 and 5,000 daltons, component (B) is derived from dimethylolpropionic acid or dimethylolpropionic acid and α,α-bis(hydroxymethyl)butyric acid and the terminal lipophilic groups are derived from stearic acid or isostearic acid.
- 17. A one-pot, one-step process for the preparation of (A)(B) or (B)(A)(B) amphiphilic block copolymers wherein
(A) is a linear hydrophilic polymer or oligomer, (B) is a random hyperbranched polymer or oligomer, and wherein said block copolymers are completely or partially terminated with lipophilic groups which comprises
adding the precursor for component (A) containing one or two reactive functional groups (a), the multi-functional monomer precursor or precursors for component (B) and the precursor or precursors for the lipophilic terminating groups to a reaction vessel at one time and heating the mixture to form said amphiphilic block copolymers.
- 18. A process according to claim 17 wherein at least two different monomer precursors for component (B) are added to said reaction vessel.
- 19. A process according to claim 17 which is an esterification process in which para-toluenesulfonic acid is added as a catalyst together with the precursors of the amphiphilic block copolymers.
- 20. A process according to claim 17 in which the molar ratio of the monomer precursor or precursors for component (B) to the reactive functional groups (a) of the precursor for component (A) is about 1:1 to about 100:1 and the molar ratio of the precursor or precursors for the lipophilic groups to the monomer precursor or precursors for component (B) is about 1:5 to about 2:1.
- 21. A composition comprising
I.) one or more additives selected from the group consisting of (A)(B) and (B)(A)(B) amphiphilic block copolymers wherein
(A) is a linear hydrophilic polymer or oligomer, (B) is a random hyperbranched polymer or oligomer, and wherein said block copolymers are completely or partially terminated with lipophilic groups, and II.) a polymeric substrate, wherein the surface energy or hydrophilicity of the polymeric substrate is increased.
- 22. A composition according to claim 21 in which component II.) is one or more polymers selected from the group consisting of polyolefins, polystyrenes, polyesters, polyamides, polyethers, polysulfones, polycarbonates, polyureas, polyurethanes and polysiloxanes.
- 23. A composition according to claim 21 in which component II.) is a polyolefin.
- 24. A composition according to claim 21 in which component (A) is derived from a mono or di-functional homopolymer, block copolymer, random copolymer or alternating copolymer selected from the group consisting of the poly(acrylate)s, poly(methacrylate)s, polyesters, poly(alkylene diol)s, poly(alkylene diol) monoalkyl ethers, poly(aryl ether)s, poly(vinyl alcohol)s, poly(acrylamide)s, poly(urea)s, poly(urethane)s, poly(methacrylamide)s, poly(ethylene imine)s, poly(vinyl ether)s, poly(vinyl esters), poly(epichlorohydrin), poly(glycidyl ether)s, poly(glycidyl ester)s, poly(carbonate)s, poly(thio ether)s, poly(thio ester)s, poly(alkyl sulfone)s, poly(aryl sulfone)s, poly(amino acid)s, polyamides, epoxy resins, novolac resins and quaternary ammonium polyacrylates and polyamines.
- 25. A composition according to claim 24 in which component (A) is derived from a linear homopolymer with an {overscore (M)}n between 300 and 500,000 daltons.
- 26. A composition according to claim 24 in which component (A) is derived from a linear homopolymer with an {overscore (M)}n between 300 and 5,000 daltons and which is selected from the group consisting of the poly(acrylate)s, poly(methacrylate)s, poly(alkylene diol)s, poly(alkylene diol) monoalkyl ethers, poly(aryl ether)s, poly(acrylamide)s, poly(methacrylamide)s, poly(ethylene imine)s, poly(vinyl ether)s and poly(vinyl ester)s.
- 27. A composition according to claim 26 in which component (A) is derived from the group consisting of poly(ethylene glycol)s, poly(propylene glycol)s, poly(ethylene glycol) monoalkyl ethers and poly(propylene glycol) monoalkyl ethers.
- 28. A composition according to claim 27 in which component I.) is an (A)(B) amphiphilic block copolymer in which component (A) is derived from a poly(ethylene glycol) monoalkyl ether.
- 29. A composition according to claim 21 wherein hyperbranched component (B) is derived from at least one multi-functional monomer wherein said monomer or monomers have one reactive group (b) and two or more reactive groups (c) and wherein reactive groups (b) and (c) are reactive with each other under condensation conditions.
- 30. An composition according to claim 29 wherein hyperbranched component (B) is a random copolymer or cooligomer derived from at least two different monomers.
- 31. A composition according to claim 29 wherein hyperbranched component (B) is derived from at least one multi-functional monomer wherein said monomer or monomers have one group (b) and two groups (c) wherein (b) is a carboxylic acid group and (c) is a hydroxyl group.
- 32. A composition according to claim 31 wherein one of said monomers is dimethylolpropionic acid.
- 33. A composition according to claim 21 in which the terminal lipophilic groups are independently straight or branched chain alkyl of 1 to 100 carbon atoms, straight or branched chain alkenyl of 1 to 100 carbon atoms, straight or branched chain alkynyl of 1 to 100 carbon atoms, cycloalkyl of 5 to 12 carbon atoms, polycycloalkyl of 14 to 112 carbon atoms, phenylalkyl of 7 to 15 carbon atoms, phenylalkenyl of 7 to 15 carbon atoms or phenylalkynyl of 7 to 15 carbon atoms.
- 34. A composition according to claim 33 in which the terminal lipophilic groups are independently straight or branched chain alkyl of 14 to 22 carbon atoms, straight or branched chain alkenyl of 14 to 22 carbon atoms or straight or branched chain alkynyl of 14 to 22 carbon atoms.
- 35. A composition according to claim 34 in which the terminal lipophilic groups are derived from myristic acid, stearic acid, isostearic acid or behenic acid.
- 36. A composition according to claim 21 in which
component I.) is an amphiphilic (A)(B) block copolymer in which component (A) is derived from poly(ethylene glycol) monomethyl ether which has a {overscore (M)}n between 300 and 5,000 daltons, component (B) is derived from dimethylolpropionic acid or dimethylolpropionic acid and α,α-bis(hydroxymethyl)butyric acid and the terminal lipophilic groups are derived from stearic acid or isostearic acid, and wherein component II.) is a polyolefin.
- 37. A composition according to claim 21 wherein component I.) is about 0.1 to about 20 percent by weight based on the total weight of components I.) and II.).
- 38. A composition according to claim 37 wherein component I.) is about 0.5 to about 5 percent by weight based on the total weight of components I.) and II.).
- 39. A composition according to claim 21 in which component I.) is incorporated into component II.) by melt blending.
- 40. A composition according to claim 21 which contains further additives selected from the group consisting of phenolic antioxidants, ultraviolet light absorbers, organic phosphorus compounds, hydroxylamines and benzofuranones.
- 41. A composition according to claim 21 which is an agricultural or packaging film, an exterior automotive part, a nonwoven fabric or filtration medium, a semipermeable membrane, an implantable medical device or a textile fiber.
- 42. A composition according to claim 21 which is a solvent or water-borne paint.
- 43. A composition according to claim 21 in which the polymer substrate of component II.) is compatible blend of a non-polar polymer and an additional polymer containing amine or carboxylic acid end groups.
- 44. A composition according to claim 43 wherein the additional polymer containing amine or carboxylic acid end groups is a polyamide or polyester.
- 45. A method of increasing the surface energy or hydrophilicity of a polymeric material wherein one or more amphiphilic block copolymers according to claim 1 is applied to or incorporated into said polymeric material.
Parent Case Info
[0001] This application claims the benefit under 35 USC 119(e) of U.S. Provisional Application Ser. No. 60/181,332 filed on Feb. 9, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60181332 |
Feb 2000 |
US |