Claims
- 1. A method for making a colored polymeric substrate comprising the steps of:
(a) providing a substrate constructed of a polymer; (b) coating at least a portion of a surface of the substrate with a color coat comprising at least one colorant, and a binder polymer obtained by copolymerizing polymerizable components comprising
a. a first monomer being ethylenically unsaturated and having a latent crosslinkable pendent group; and b. a second monomer having an ethylenically unsaturated double bond copolymerizable with the first monomer; wherein the second monomer is substantially non-reactive with the latent crosslinkable group of the first monomer; and (c) subjecting the coated substrate to conditions which cause the color coat to adhere to the substrate.
- 2. A method as claimed in claim 1, wherein said latent crosslinkable pendent group is selected from the group consisting of epoxy, hydroxy, alkenyl, isocyanate, peroxy, perester, anhydride, silane, and combinations thereof.
- 3. A method as claimed in claim 1, wherein said latent crosslinkable pendent group is activated by moisture, heat, nucleophilic catalysis, or combinations thereof.
- 4. A method as claimed in claim 1, wherein said latent crosslinkable pendent group is selected from the group consisting of alkoxysilane, silanol, acetoxysilane, silanes, and halosilane.
- 5. A method as claimed in claim 4, wherein said latent crosslinkable pendent group is selected from the group consisting of alkoxysilane and halosilane.
- 6. A method as claimed in claim 5, wherein said first monomer is a polymerizable halosilane or alkoxysilane compound of the formula (I):
- 7. A method as claimed in claim 6, wherein X is a (meth)acryloxy group,
- 8. A method as claimed in claim 7, wherein X is a (meth)acryloxy group or a vinyl group.
- 9. A method as claimed in claim 6, wherein n is from 2 to 3, and X is a methacryloxy group.
- 10. A method as claimed in claim 6, wherein Z is —OR2 and q is 3.
- 11. A method as claimed in claim 6, wherein said first monomer is selected from the group consisting of methacryloxyethyltrimethoxysilane, methacryloxyethylmethyidimethoxysilane, methacryloxyethyldimethylmethoxysilane, methacryloxyethyltriethoxysilane, methacryloxyethylmethyldiethoxysilane, methacryloxyethyldimethylethoxysilane, methacryloxyethyltrichlorosilane, methacryloxypropyltrimethoxysilane, methacryloxypropylmethyldimethoxysilane, methacryloxypropyldimethylmethoxysilane, methacryloxypropyltriethoxysilane, methacryloxypropymethyidiethoxysilane, methacryloxypropyidimethylethoxysilane, styrylethyltrimethoxysilane, and 3-(N-styrlmethyl-2-aminoethylamino) propyltrimethoxysilane hydrochloride.
- 12. A method as claimed in claim 6, wherein at least one R2 is a methyl group.
- 13. A method as claimed in claim 10, wherein at least one R2 is a methyl group.
- 14. A method as claimed in claim 6, wherein said first monomer is selected from the group consisting of methacryloxyethyltrimethoxysilane, methacryloxyethylmethyldimethoxysilane, and methacryloxyethyidimethylethoxysilane.
- 15. A method as claimed in claim 10, wherein Z is a halide.
- 16. A method as claimed in claim 6, wherein said first monomer is selected from the group consisting of methacryloxypropylmethyldichlorosilane, methacryloxypropyltrichlorosilane, 3-methacryloxypropyldimethylchlorosilane, and methacryloxyethyltrichlorosilane.
- 17. A method as claimed in claim 4, wherein said second monomer is silicon-free.
- 18. A method as claimed in claim 1, wherein the second monomer does not contain hydroxy functional groups, primary and secondary amine functional groups, or acid functional groups.
- 19. A method as claimed in claim 1, wherein the second monomer is selected from the group consisting of N-vinyl heterocyclic monomers, C1 to C6 alkyl vinyl ethers, C1 to C6 alkyl esters of acrylic or methacrylic acid, C1 to C6 alkyl styrenes, vinyl monomers, diene monomers, and C1 to C6 alkoxy C1 to C6 alkyl esters of acrylic or methacrylic acid.
- 20. A method as claimed in claim 19, wherein the second monomer is selected from the group consisting of N-vinyl heterocyclic monomers and alkyl (meth)acrylamides.
- 21. A method as claimed in claim 20, wherein the second monomer is selected from the group consisting of N,N-dimethyl acrylamide and N-vinylpyrolidone.
- 22. A method as claimed in claim 1, wherein said substrate is a contact lens and said step of subjecting the lens to conditions simultaneously causes the color coat to adhere to the lens and causes the lens to become hydrated.
- 23. A method as claimed in claim 1, wherein said substrate is a contact lens and said step of subjecting the lens to conditions simultaneously causes the color coat to adhere to the lens and causes the lens to become sterilized.
- 24. A method for making a colored contact lens comprising the steps of:
(a) coating at least a portion of at least one lens-forming surface of a lens mold with a color coat comprising at least one colorant, and a binder polymer obtained by copolymerizing polymerizable components comprising
a. a first monomer being ethylenically unsaturated and having a latent crosslinkable pendent group; and b. a second monomer having an ethylenically unsaturated double bond copolymerizable with the first monomer; wherein the second monomer is substantially non-reactive with the latent crosslinkable group of the first monomer; and (b) adding a lens forming composition to the lens mold while maintaining the color coat in position; (c) curing the lens-forming composition to form a coated lens; (d) subjecting the coated lens to conditions which cause the color coat to adhere to the lens.
- 25. A method as claimed in claim 24, wherein said latent crosslinkable pendent group is selected from the group consisting of epoxy, hydroxy, alkenyl, isocyanate, peroxy, perester, anhydride, silane, and combinations thereof.
- 26. A method as claimed in claim 24, wherein said latent crosslinkable pendent group is activated by moisture, heat, nucleophilic catalysis, or combinations thereof.
- 27. A method as claimed in claim 24, wherein said latent crosslinkable pendent group is selected from the group consisting of alkoxysilane, silanol, acetoxysilane, silanes, and halosilane.
- 28. A method as claimed in claim 27, wherein said latent crosslinkable pendent group is selected from the group consisting of alkoxysilane and halosilane.
- 29. A method as claimed in claim 28, wherein said first monomer is a polymerizable halosilane or alkoxysilane compound of the formula (I):
- 30. A method as claimed in claim 29, wherein X is a (meth)acryloxy group,
- 31. A method as claimed in claim 30, wherein X is a (meth)acryloxy group or a vinyl group.
- 32. A method as claimed in claim 29, wherein n is from 2 to 3, and X is a methacryloxy group.
- 33. A method as claimed in claim 29, wherein Z is —OR2 and q is 3.
- 34. A method as claimed in claim 29, wherein said first monomer is selected from the group consisting of methacryloxyethyltrimethoxysilane, methacryloxyethylmethyldimethoxysilane, methacryloxyethyidimethylmethoxysilane, methacryloxyethyltriethoxysilane, methacryloxyethylmethyldiethoxysilane, methacryloxyethyldimethylethoxysilane, methacryloxyethyltrichlorosilane, methacryloxypropyltrimethoxysilane, methacryloxypropylmethyidimethoxysilane, methacryloxypropyldimethylmethoxysilane, methacryloxypropyltriethoxysilane, methacryloxypropymethyldiethoxysilane, methacryloxypropyldimethylethoxysilane, styrylethyltrimethoxysilane, and 3-(N-styrlmethyl-2-aminoethylamino) propyltrimethoxysilane hydrochloride.
- 35. A method as claimed in claim 29, wherein at least one R2 is a methyl group.
- 36. A method as claimed in claim 33, wherein at least one R2 is a methyl group.
- 37. A method as claimed in claim 29, wherein said first monomer is selected from the group consisting of methacryloxyethyltrimethoxysilane, methacryloxyethylmethyldimethoxysilane, and methacryloxyethyidimethylethoxysilane.
- 38. A method as claimed in claim 33, wherein Z is a halide.
- 39. A method as claimed in claim 29, wherein said first monomer is selected from the group consisting of methacryloxypropylmethyldichlorosilane, methacryloxypropyltrichlorosilane, 3-methacryloxypropyldimethylchlorosilane, and methacryloxyethyltrichlorosilane.
- 40. A method as claimed in claim 27, wherein said second monomer is silicon-free.
- 41. A method as claimed in claim 24, wherein the second monomer does not contain hydroxy functional groups, primary and secondary amine functional groups, or acid functional groups.
- 42. A method as claimed in claim 24, wherein the second monomer is selected from the group consisting of N-vinyl heterocyclic monomers, C1 to C6 alkyl vinyl ethers, C1 to C6 alkyl esters of acrylic or methacrylic acid, C1 to C6 alkyl styrenes, vinyl monomers, diene monomers, and C1 to C6 alkoxy C1 to C6 alkyl esters of acrylic or methacrylic acid.
- 43. A method as claimed in claim 42, wherein the second monomer is selected from the group consisting of N-vinyl heterocyclic monomers and alkyl (meth)acrylamides.
- 44. A method as claimed in claim 43, wherein the second monomer is selected from the group consisting of N,N-dimethyl acrylamide and N-vinylpyrolidone.
- 45. A method as claimed in claim 24, wherein said step of subjecting the lens to conditions simultaneously causes the color coat to adhere to the lens and causes the lens to become hydrated.
- 46. A method as claimed in claim 24, wherein said step of subjecting the lens to conditions simultaneously causes the color coat to adhere to the lens and causes the lens to become sterilized.
- 47. A method for making a colored contact lens comprising the steps of:
(a) providing a contact lens constructed of a polymer having functional groups; (b) coating at least a portion of a surface of the lens with a color coat comprising at least one colorant, and a binder polymer obtained by copolymerizing polymerizable components comprising
a. a first monomer being ethylenically unsaturated and having a latent crosslinkable pendent group; and b. a second monomer having an ethylenically unsaturated double bond copolymerizable with the first monomer; wherein the second monomer is substantially non-reactive with the latent crosslinkable group of the first monomer; and (c) allowing the color coat to crosslink, thus adhering to the lens.
- 48. A method for making a colored contact lens comprising the steps of:
(a) providing a contact lens constructed of a hydrogel polymer; (b) coating at least a portion of a surface of the lens with a color coat comprising at least one colorant, and a binder polymer obtained by copolymerizing polymerizable components comprising
a. a first monomer being ethylenically unsaturated and having a latent crosslinkable pendent group; and b. a second monomer having an ethylenically unsaturated double bond copolymerizable with the first monomer; wherein the second monomer is substantially non-reactive with the latent crosslinkable group of the first monomer; and (c) allowing the color coat to crosslink, thus adhering to the lens.
- 49. A method for making a colored contact lens comprising the steps of:
(a) providing a contact lens constructed of a polymer; (b) coating at least a portion of a surface of the lens with a color coat comprising at least one colorant, and a binder polymer having a plurality of latent crosslinking groups, wherein said color coat is substantially free of compounds having active hydrogen groups; and (c) subjecting the coated lens to conditions which cause the color coat to adhere to the lens.
- 50. A method as claimed in claim 49, wherein said color coat is substantially free of an adhesion promoter.
- 51. A method as claimed in claim 49, wherein said color coat is substantially free of compounds that crosslink with the binder polymer.
- 52. A method as claimed in claim 49, wherein said color coat is substantially free of nucleophilic solvents.
- 53. A colored contact lens comprising:
(a) a contact lens constructed of a polymer; and (b) a coating on at least a portion of a surface of the lens comprising at least one colorant, and a crosslinked binder polymer wherein the binder polymer comprises a copolymer reaction product of
a. a first monomer being ethylenically unsaturated and having a latent crosslinkable pendent group; and b. a second monomer having an ethylenically unsaturated double bond copolymerizable with the first monomer.
- 54. A method of forming a contact lens containing an image thereon comprising the step of printing a moisture curable ink composition onto a hydrogel contact lens, wherein the ink composition cross links after being printed onto the lens.
- 55. A hydrophilic colored contact lenses made by the process of claim 1.
- 56. A hydrophilic colored contact lenses made by the process of claim 24.
STATEMENT OF RELATED APPLICATIONS
[0001] This patent application claims priority on provisional application Ser. No. 60/342,199 filed Dec. 19, 2001 and 60/276,772 filed Mar. 16, 2001, the entirety of which are hereby incorporated by reference.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60342199 |
Dec 2001 |
US |
|
60276772 |
Mar 2001 |
US |