Claims
- 1. A coating composition consisting essentially of:
(a) from about 20 to about 70 weight percent of a silane monomer mixture of (i) a first silane monomer which is a glycidoxy(C1-C3)alkyl(C1-C2)a alkyl(C1-C2)b alkoxysilane wherein a is an integer of from 0 to 2 and b is the integer 2 or 3, provided that b is 3 only when a is 0 or 1, and (ii) a second silane monomer having the general formula (x)c(C1-C3)dalkyl(C1-C3)ealkyl(R1)fSi4−(d+e+f), wherein X is selected from the group consisting of mercapto, amino, chloro and methacryloxy, R1 is C1-C4 alkoxy or acetoxy, and c and d are each the integers 0 or 1, e is the integer 1 or 2, and f is the integer 2 or 3, the weight ratio of (i):(ii) being from about 1:3 to about 1:20; (b) from about 1 to about 40 weight percent of tetra(C1-C4)alkoxysilane; (c) a binding amount of silane monomer-compatible water-soluble organic polymer; (d) a leveling amount of nonionic surfactant; (e) a solvating amount of lower aliphatic alcohol; (f) a catalytic amount of water-soluble acid; and (g) water in an amount sufficient to form hydrolysates of said silane monomers and to solubilize said water-soluble polymer and acid.
- 2. The coating composition of claim 1 wherein the amount of the silane monomer mixture is from about 20 to about 55 weight percent, the weight ratio of (i):(ii) is from about 1:4 to about 1:15; the amount of tetra(C1-C4)alkoxysilane is from about 2 to about 20 weight percent; the water-soluble polymer is selected from the group consisting of hydroxyethyl cellulose, polyvinyl alcohol, and polyvinyl pyrrolidone and is present in an amount of from about 1 to about 8 weight percent; said nonionic surfactant is selected from the group consisting of alkyl phenol ethoxylates, fluoroaliphatic polymeric esters and fluorinated alkyl polyoxyethylene ethanols; and the lower aliphatic alcohol is C1-C3 alkanol or aliphatic alcohol of the formula [(R3)iR4]j(C1-C3)OH, wherein R3 and R4 are each C1-C2 alkoxy, i is the integer 0 or 1, and j is the integer 1.
- 3. The coating composition of claim 2 wherein the amount of the silane monomer mixture is from about 20 to about 45 weight percent, the weight ratio of (i):(ii) is from about 1:7 to about 1:10; the amount of the tetra(C1-C4)alkoxysilane is from about 2 to 10 weight percent; the lower aliphatic alcohol is selected from the group consisting of methanol, ethanol, 1-propanol and 1-methoxy-2-propanol; and the water-soluble acid is acetic acid or nitric acid.
- 4. The composition of claim 1 wherein the first silane monomer is gamma-glycidoxypropyltrimethoxysilane, gamma-glycidoxypropylmethyldimethoxysilane, gamma-glycidoxy-propyldimethylethoxysilane, hydrolysates thereof, or mixtures of such silane monomers; the second silane monomer is methyltrimethoxysilane, methyltriethoxysilane, ethyltri-methoxysilane, ethyltriethoxysilane, hydrolysates thereof or mixtures of such silane monomers; the water-soluble polymer is a polyvinyl alcohol that is at least 72 percent hydrolyzed; the nonionic surfactant is a fluoroaliphatic polymeric ester; the lower aliphatic alcohol is methanol, ethanol or 1-propanol and the water-soluble acid is acetic acid.
- 5. The composition of claim 4 wherein said polyvinyl alcohol is at least 87 percent hydrolyzed.
- 6. The coating composition of claim 5 wherein said solvating amount of lower aliphatic alcohol represents up to about 40 weight percent of the coating composition.
- 7. The coating composition of claim 3 wherein the pH of said coating composition is from about 4 to about 5.
- 8. The coating composition of claim 2 wherein the composition also includes from about 1 to about 10 weight percent of fluorinated silane.
- 9. The coating composition of claim 8 wherein said fluorinated silane is present in an amount of from about 1 to about 5 weight percent.
- 10. The coating composition of claim 9 wherein said fluorinated silane is 3,3,3-trifluoropropyltrimethoxysilane.
- 11. A coating composition consisting essentially of:
(a) from about 20 to about 70 weight percent of a silane monomer mixture of (i) a first silane monomer which is a glycidoxy(C1-C3)alkyl(C1-C2)a alkyl(C1-C2)b alkoxysilane wherein a is an integer of from 0 to 2 and b is the integer 2 or 3, provided that b is 3 only when a is 0 or 1, and (ii) a second silane monomer having the general formula (X)c(C1-C3)dalkyl(C1-C3)ealkyl(R1)fSi4−(d+e+f), wherein X is selected from the group consisting of mercapto, amino, chloro and methacryloxy, R1 is C1-C4 alkoxy or acetoxy, and c and d are each the integers 0 or 1, e is the integer 1 or 2, and f is the integer 2 or 3, the weight ratio of (i):(ii) being from about 1:7 to about 1:15; (b) a binding amount of silane monomer-compatible water-soluble organic polymer; (c) a leveling amount of nonionic surfactant; (d) a solvating amount of lower aliphatic alcohol; (e) a catalytic amount of water-soluble acid; and (f) water in an amount sufficient to form hydrolysates of said silane monomers and to solubilize said water-soluble polymer and acid.
- 12. The coating composition of claim 11 wherein the amount of the silane monomer mixture is from about 20 to to about 55 weight percent, the weight ratio of (i):(ii) is from about 1:7 to about 1:10; the water-soluble polymer is selected from the group consisting of hydroxyethyl cellulose, polyvinyl alcohol, and polyvinyl pyrrolidone and is present in an amount of from about 1 to about 8 weight percent; said nonionic surfactant is selected from the group consisting of alkyl phenol ethoxylates, fluoroaliphatic polymeric esters and fluorinated alkyl polyoxyethylene ethanols; and the lower aliphatic alcohol is C1-C3 alkanol or aliphatic alcohol of the formula [(R3)iR4]j(C1-C3)OH, wherein R3 and R4 are each C1-C2 alkoxy, i is the integer 0 or 1, and j is the integer 1.
- 13. The coating composition of claim 12 wherein the amount of the silane monomer mixture is from about 20 to 45 weight percent; the lower aliphatic alcohol is selected from the group consisting of methanol, ethanol, 1-propanol and 1-methoxy-2-propanol; and the water-soluble acid is acetic acid or nitric acid.
- 14. The coating composition of claim 11 wherein the composition also includes from about 1 to about 10 weight percent of fluorinated silane.
- 15. The coating composition of claim 14 wherein said fluorinated silane is present in an amount from about 1 to about 5 weight percent.
- 16. A process for preparing an antireflective coating on an organic polymeric host material comprising the steps of:
(a) coating said polymeric host with a transparent durable coating composition, (b) curing said coating composition; (c) treating the cured coating with an aqueous acidic solution comprising from about 0.5 to 3 weight percent hydrofluoric acid, and from about 0 to 1.0 weight percent nitric acid for a time sufficient to produce a coating having a graded refractive index; (d) contacting the cured coating of step (c) with an aqueous alkaline leaching solution for a time sufficient to remove residual acid from the surface of the coating; and (e) drying and further curing the coating of step (d).
- 17. The process of claim 16 wherein a nonionic fluorosurfactant is present in the aqueous acidic solution; said aqueous alkaline leaching solution is an aqueous alkaline solution comprising tetra(C1-C4)alkylammonium hydroxide and nonionic fluorosurfactant; and the organic polymeric host material is selected from the group consisting of poly(C1-C12 alkyl methacrylates), poly(oxyalkylene dimethacrylates), poly(alkoxylated phenol methacrylates), cellulose acetate, cellulose triacetate, cellulose acetate propionate, cellulose acetate butyrate, poly(vinyl acetate), poly(vinyl alcohol), poly(vinyl chloride), poly(vinylidene chloride), thermoplastic polycarbonates, polyesters, polyurethanes, poly(ethylene terephthalate), polystyrene, poly(alpha methylstyrene), copoly(styrene-methylmethacrylate), copoly(styrene-acrylonitrile), polyvinylbutyral and polymers of members of the group consisting of polyol(allyl carbonate) monomers, polyfunctional acrylate monomers, polyfunctional methacrylate monomers, diethylene glycol dimethacrylate monomers, diisopropenyl benzene monomers, ethoxylated bisphenol A dimethacrylate monomers, ethylene glycol bismethacrylate monomers, poly(ethylene glycol) bismethacrylate monomers, ethoxylated phenol methacrylate monomers, alkoxylated polyhydric alcohol acrylate monomers and diallylidene pentaerythritol monomers.
- 18. The process of claim 17 wherein said nonionic fluorosurfacant is fluorinated alkylpolyoxyethylene ethanol, and said organic polymeric host material is a solid transparent homopolymer or copolymer selected from the group consisting of poly(methyl methacrylate), poly(ethylene glycol bismethacrylate), poly(ethoxylated bisphenol A dimethacrylate), thermoplastic polycarbonate, poly(vinyl acetate), polyvinylbutyral, polyurethane and polymers of members of the group consisting of diethylene glycol bis(allyl carbonate) monomers, diethylene glycol dimethacrylate monomers, ethoxylated phenol methacrylate monomers, diisopropenyl benzene monomers and ethoxylated trimethylol propane triacrylate monomers.
- 19. A process for preparing an antireflective coating on an organic polymeric host material comprising the steps of:
(a) applying to said polymeric host a coating composition consisting essentially of: (1) about 20 to 70 weight percent of a silane monomer mixture of (i) a first silane monomer which is a glycidoxy(C1-C3)alkyl(C1-C2)a alkyl(C1-C2)b alkoxysilane, wherein a is an integer of from 0 to 2 and b is the integer 2 or 3, provided that b is 3 only when a is 0 or 1, and (ii) a second silane monomer having the general formula (X)c(C1-C3)dalkyl(C1-C3)ealkyl(R1)fSi4−(d+e+f), wherein X is selected from the group consisting of mercapto, amino, chloro and methacryloxy, R1 is C1-C4 alkoxy or acetoxy, and c and d are each the integers 0 or 1, e is the integer 1 or 2, and f is the integer 2 or 3, the weight ratio of (i):(ii) being from about 1:3 to 1:20; (2) from about 1 to 40 weight percent of tetra(C1-C4)alkoxysilane; (3) a binding amount of silane monomer-compatible water-soluble organic polymer; (4) a leveling amount of nonionic surfactant; (5) a solvating amount of lower aliphatic alcohol; (6) a catalytic amount of water-soluble acid; and (7) water in an amount sufficient to form hydrolysates of said silane monomers and to solubilize said water-soluble polymer and acid; (b) curing said coating composition; (c) treating the cured coating with an aqueous acidic solution comprising from about 0.5 to 3 weight percent hydrofluoric acid, and from about 0 to 1.0 weight percent nitric acid for a time sufficient to produce a coating having a graded refractive index; (d) contacting the treated coating of step (c) with an aqueous alkaline leaching solution for a time sufficient to remove residual acid from the surface of the coating; and (e) drying and further curing the coating of step (d).
- 20. The process of claim 19 wherein a nonionic fluorosurfactant is present in the aqueous acidic solution; said aqueous alkaline leaching solution is an aqueous alkaline solution comprising tetra(C1-C4)alkylammonium hydroxide and nonionic fluorosurfactant; and the organic polymeric host material is selected from the group consisting of poly(C1-C12 alkyl methacrylates), poly(oxyalkylene dimethacrylates), poly(alkoxylated phenol methacrylates), cellulose acetate, cellulose triacetate, cellulose acetate propionate, cellulose acetate butyrate, poly(vinyl acetate), poly(vinyl alcohol), poly(vinyl chloride), poly(vinylidene chloride), thermoplastic polycarbonates, polyesters, polyurethanes, poly(ethylene terephthalate), polystyrene, poly(alpha methylstyrene), copoly(styrene-methylmethacrylate), copoly(styrene-acrylonitrile), polyvinylbutyral and polymers of members of the group consisting of polyol(allyl carbonate) monomers, polyfunctional acrylate monomers, polyfunctional methacrylate monomers, diethylene glycol dimethacrylate monomers, diisopropenyl benzene monomers, ethoxylated bisphenol A dimethacrylate monomers, ethylene glycol bismethacrylate monomers, poly(ethylene glycol) bismethacrylate monomers, ethoxylated phenol methacrylate monomers, alkoxylated polyhydric alcohol acrylate monomers and diallylidene pentaerythritol monomers.
- 21. The process of claim 20 wherein said nonionic fluorosurfacant is fluorinated alkylpolyoxyethylene ethanol, and said organic polymeric host material is a solid transparent homopolymer or copolymer selected from the group consisting of poly(methyl methacrylate), poly(ethylene glycol bismethacrylate), poly(ethoxylated bisphenol A dimethacrylate), thermoplastic polycarbonate, poly(vinyl acetate), polyvinylbutyral, polyurethane and polymers of members of the group consisting of diethylene glycol bis(allyl carbonate) monomers, diethylene glycol dimethacrylate monomers, ethoxylated phenol methacrylate monomers, diisopropenyl benzene monomers and ethoxylated trimethylol propane triacrylate monomers.
- 22. The process of claim 20 wherein the amount of the silane monomer mixture is from about 20 to 55 weight percent, the weight ratio of (i):(ii) is from about 1:4 to about 1:15; the amount of tetra(C1-C4)alkoxysilane is from about 2 to about 20 weight percent; the water-soluble polymer is selected from the group consisting of hydroxyethyl cellulose, polyvinyl alcohol, and polyvinyl pyrrolidone and is present in an amount of from about 1 to 8 weight percent; said nonionic surfactant is selected from the group consisting of alkyl phenol ethoxylates, fluoroaliphatic polymeric esters and fluorinated alkyl polyoxyethylene ethanol; and the lower aliphatic alcohol is a C1-C3 alkanol or aliphatic alcohol of the formula [(R3)iR4]j(C1-C3)OH, wherein R3 and R4 are each C1-C2 alkoxy, i is the integer 0 or 1, and j is the integer 1.
- 23. The process of claim 22 wherein the amount of the silane monomer mixture is from about 20 to 45 weight percent, the weight ratio of (i):(ii) is from about 1:7 to about 1:15; the amount of tetra(C1-C4)alkoxysilane is from about 2 to about 10 weight percent; the lower aliphatic alcohol is selected from the group consisting of methanol, ethanol, 1-propanol and 1-methoxy-2-propanol, and the water-soluble acid is acetic acid or nitric acid;
- 24. The process of claim 23 wherein the first silane monomer is gamma-glycidoxypropyltrimethoxysilane, gamma-glycidoxypropylmethyldimethoxysilane, gamma-glycidoxypropyldimethylethoxysilane, hydrolysates thereof, or mixtures of such silane monomers and the second silane monomer is methyltrimethoxysilane, methyltriethoxysilane, ethyltrimethoxysilane, ethyltriethoxysilane, hydrolysates thereof or mixtures of such silane monomers; the water-soluble polymer is a polyvinyl alcohol that is at least 72 percent hydrolyzed; the nonionic surfactant is a fluoroaliphatic polymeric ester; the lower aliphatic alcohol is methanol, ethanol or 1-propanol and the water-soluble acid is acetic acid.
- 25. The process of claim 24 wherein said polyvinyl alcohol is at least 87 percent hydrolyzed.
- 26. The process of claim 19 wherein said coating composition includes also from about 1 to about 10 weight percent of fluorinated silane.
- 27. The process of claim 26 wherein said fluorinated silane is from about 1 to about 5 weight percent.
- 28. A process for preparing an antireflective coating on an organic polymeric host material comprising the steps of:
(a) applying to said polymeric host a coating composition consisting essentially of: (1) about 20 to 70 weight percent of a silane monomer mixture of (i) a first silane monomer which is a glycidoxy(C1-C3)alkyl(C1-C2)a alkyl(C1-C2)b alkoxysilane, wherein a is an integer of from 0 to 2 and b is the integer 2 or 3, provided that b is 3 only when a is 0 or 1, and (ii) a second silane monomer having the general formula (X) c(C1-C3)dalkyl(C1-C3)ealkyl(R1)fSi4−(d+e+f), wherein X is selected from the group consisting of mercapto, amino, chloro and methacryloxy, R1 is C1-C4 alkoxy or acetoxy, and c and d are each the integers 0 or 1, e is the integer 1 or 2, and f is the integer 2 or 3, the weight ratio of (i):(ii) being from about 1:4 to 1:15; (2) a binding amount of silane monomer-compatible water-soluble organic polymer; (3) a leveling amount of nonionic surfactant; (4) a solvating amount of lower aliphatic alcohol; (5) a catalytic amount of water-soluble acid; and (6) water in an amount sufficient to form hydrolysates of said silane monomers and to solubilize said water-soluble polymer and acid; (b) curing said coating composition; (c) treating the cured coating with an aqueous acidic solution comprising from about 0.5 to 3 weight percent hydrofluoric acid, and from about 0 to 1.0 weight percent nitric acid for a time sufficient to produce a coating having a graded refractive index; (d) contacting the treated coating of step (c) with an aqueous alkaline leaching solution for a time sufficient to remove residual acid from the surface of the coating; and (e) drying and further curing the coating of step (d).
- 29. The process of claim 28 wherein a nonionic fluorosurfactant is present in the aqueous acidic solution; said aqueous alkaline leaching solution is an aqueous alkaline solution comprising tetra(C1-C4)alkylammonium hydroxide and nonionic fluorosurfactant; and the organic polymeric host material is selected from the group consisting of poly(C1-C12 alkyl methacrylates), poly(oxyalkylene dimethacrylates), poly(alkoxylated phenol methacrylates), cellulose acetate, cellulose triacetate, cellulose acetate propionate, cellulose acetate butyrate, poly(vinyl acetate), poly(vinyl alcohol), poly(vinyl chloride), poly(vinylidene chloride), thermoplastic polycarbonates, polyesters, polyurethanes, poly(ethylene terephthalate), polystyrene, poly(alpha methylstyrene), copoly(styrene-methylmethacrylate), copoly(styrene-acrylonitrile), polyvinylbutyral and polymers of members of the group consisting of polyol(allyl carbonate) monomers, polyfunctional acrylate monomers, polyfunctional methacrylate monomers, diethylene glycol dimethacrylate monomers, diisopropenyl benzene monomers, ethoxylated bisphenol A dimethacrylate monomers, ethylene glycol bismethacrylate monomers, poly(ethylene glycol) bismethacrylate monomers, ethoxylated phenol methacrylate monomers, alkoxylated polyhydric alcohol acrylate monomers and diallylidene pentaerythritol monomers.
- 30. The process of claim 29 wherein said nonionic fluorosurfacant is fluorinated alkylpolyoxyethylene ethanol, and said organic polymeric host material is a solid transparent homopolymer or copolymer selected from the group consisting of poly(methyl methacrylate), poly(ethylene glycol bismethacrylate), poly(ethoxylated bisphenol A dimethacrylate), thermoplastic polycarbonate, poly(vinyl acetate), polyvinylbutyral, polyurethane and polymers of members of the group consisting of diethylene glycol bis(allyl carbonate) monomers, diethylene glycol dimethacrylate monomers, ethoxylated phenol methacrylate monomers, diisopropenyl benzene monomers and ethoxylated trimethylol propane triacrylate monomers.
- 31. The process of claim 28 wherein the amount of the silane monomer mixture is from about 20 to 55 weight percent, the weight ratio of (i):(ii) is from about 1:7 to about 1:10; the water-soluble polymer is selected from the group consisting of hydroxyethyl cellulose, polyvinyl alcohol, and polyvinyl pyrrolidone and is present in an amount of from about 1 to 8 weight percent; said nonionic surfactant is selected from the group consisting of alkyl phenol ethoxylates, fluoroaliphatic polymeric esters and fluorinated alkyl polyoxyethylene ethanol; and the lower aliphatic alcohol is a C1-C3 alkanol or aliphatic alcohol of the formula [(R3)iR4]j(C1-C3)OH, wherein R3 and R4 are each C1-C2 alkoxy, i is the integer 0 or 1, and j is the integer 1.
- 32. The process of claim 31 wherein the amount of the silane monomer mixture is from about 20 to 45 weight percent; the lower aliphatic alcohol is selected from the group consisting of methanol, ethanol, 1-propanol and 1-methoxy-2-propanol, and the water-soluble acid is acetic acid or nitric acid;
- 33. An article comprising, in combination, an organic polymeric host material and on at least one surface thereof the cured coating composition of claim 1.
- 34. The article of claim 33 wherein the article is an optical element and the coating is antireflective.
- 35. The article of claim 34 wherein said optical element has a visible light transmission of greater than about 95 percent and percent haze of not more than about 0.5.
- 36. The article of claim 35 wherein said optical element is an ophthalmic lens.
- 37. An article comprising, in combination, an organic polymeric host material and on at least one surface thereof the cured coating composition of claim 8.
- 38. An article comprising, in combination, an organic polymeric host material and on at least one surface thereof the cured coating composition of claim 11.
- 39. An article comprising, in combination, an organic polymeric host material and on at least one surface thereof the cured coating composition of claim 14.
- 40. An article comprising, in combination, an organic polymeric host material and on at least one surface thereof an antireflective coating prepared by the process of claim 16.
- 41. An article comprising, in combination, an organic polymeric host material and on at least one surface thereof an antireflective coating prepared by the process of claim 19.
- 42. An article comprising, in combination, an organic polymeric host material and on at least one surface thereof an antireflective coating prepared by the process of claim 28.
- 43. A photochromic article comprising, in combination, an organic polymeric host material, a photochromic amount of at least one organic photochromic compound associated with said host material, and on at least one surface thereof the cured coating composition of claim 1.
- 44. The photochromic article of claim 43 wherein said organic polymeric host material is a solid transparent homopolymer or copolymer selected from the group consisting of poly(methyl methacrylate), poly(ethylene glycol bismethacrylate), poly(ethoxylated bisphenol A dimethacrylate), thermoplastic polycarbonate, poly(vinyl acetate), polyvinylbutyral, polyurethane and polymers of members of the group consisting of diethylene glycol bis(allyl carbonate) monomers, diethylene glycol dimethacrylate monomers, ethoxylated phenol methacrylate monomers, diisopropenyl benzene monomers and ethoxylated trimethylol propane triacrylate monomers.
- 45. The photochromic article of claim 44 wherein the article is an optical element.
- 46. The photochromic article of claim 45 wherein the cured coating is antireflective.
- 47. The photochromic article of claim 46 wherein the article is an ophthalmic lens.
- 48. A photochromic article comprising, in combination, an organic polymeric host material, a photochromic amount of at least one organic photochromic compound associated with said host material, and on at least one surface thereof the cured coating composition of claim 11.
- 49. A photochromic article comprising, in combination, an organic polymeric host material, a photochromic amount of at least one organic photochromic compound associated with said host material, and on at least one surface thereof an antireflective coating prepared by the process of claim 19.
- 50. A photochromic article comprising, in combination, an organic polymeric host material, a photochromic amount of at least one organic photochromic compound associated with said host material, and on at least one surface thereof an antireflective coating prepared by the process of claim 28.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation-in-part application of U.S. patent application Ser. No. 08/165,996 filed Dec. 13, 1993.
Divisions (1)
|
Number |
Date |
Country |
Parent |
08585617 |
Jan 1996 |
US |
Child |
09795619 |
Feb 2001 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
08165996 |
Dec 1993 |
US |
Child |
08585617 |
Jan 1996 |
US |