Claims
- 1. A polymeric film composition comprising a polymeric binder having hydrogen bonding functionality and having a weight average molecular weight greater than 20,000, wherein at a predetermined first lower temperature and a shear stress of 10,000 Pa the film has a viscosity of at least 3×106 Pa-s, and further wherein at a predetermined second higher temperature and a shear stress of 50,000 Pa the film has a viscosity of no greater than 1×104 Pa-s.
- 2. The polymeric film composition of claim 1 wherein the predetermined first lower temperature is in the range of about 20-40° C. and the predetermined second higher temperature is in the range of about 70-100° C.
- 3. The polymeric film composition of claim 1 wherein the composition further comprises an ethylenically unsaturated monomer and a photoinitiator system.
- 4. The polymeric film composition of claim 1 wherein the binder comprises a comb polymer comprising a backbone and more than one polymeric arm, wherein one of the following conditions is met:
I. (i) the polymeric arm is a copolymer comprising 40-80% by weight of a monomer having a functionality capable of hydrogen bonding; (ii) the number average molecular weight of the polymeric arm is greater than 2500; and (iii) the weight ratio of backbone to arm is less than 3; OR II. (i) the polymeric arm is a copolymer comprising greater than 70% by weight of a monomer having a functionality capable of hydrogen bonding; (ii) the number average molecular weight of the polymeric arm is less than 2500; and (iii) the weight ratio of backbone to arm is less than 4.
- 5. The polymeric film composition of claim 4 wherein the functionality capable of hydrogen bonding is selected from carboxyl, amide, hydroxyl, amino, pyridyl, oxy, carbamoyl, and mixtures thereof.
- 6. The polymeric film composition of claim 4 wherein the monomer having functionality capable of hydrogen bonding is selected from acrylic acid, methacrylic acid and mixtures thereof.
- 7. The polymeric film composition of claim 4 wherein the polymeric arm further comprises a monomer selected from acrylates, methacrylates, styrene, substituted styrenes, acrylonitrile, and mixtures thereof.
- 8. The polymeric film composition of claim 4 wherein the backbone comprises a monomer selected from acrylates, methacrylates, styrene, substituted styrenes, acrylonitrile, and mixtures thereof.
- 9. The polymeric film composition of claim 4 wherein the composition further comprises an ethylenically unsaturated monomer and a photoinitiator system.
- 10. The polymeric film composition of claim 1 wherein the binder comprises:
A. a comb polymer comprising a backbone and more than one polymeric arm, wherein (i) the polymeric arm is a copolymer comprising 20-40% by weight of a monomer having a functionality capable of hydrogen bonding and (ii) the weight ratio of backbone to arm is less than 3; and B. a second linear polymer having functionality capable of hydrogen bonding.
- 11. The polymeric film composition of claim 10 wherein the functionality capable of hydrogen bonding in the comb polymer and the functionality capable of hydrogen bonding in the second polymer are independently selected from carboxyl, amide, hydroxyl, amino, pyridyl, oxy, carbamoyl, and mixtures thereof.
- 12. The polymeric film composition of claim 10 wherein the monomer having functionality capable of hydrogen bonding is selected from acrylic acid, methacrylic acid and mixtures thereof.
- 13. The polymeric film composition of claim 10 wherein the polymeric arm further comprises a monomer selected from acrylates, methacrylates, styrene, substituted styrenes, acrylonitrile, and mixtures thereof.
- 14. The polymeric film composition of claim 10 wherein the backbone comprises a monomer selected from acrylates, methacrylates, styrene, substituted styrenes, acrylonitrile, and mixtures thereof.
- 15. The polymeric film composition of claim 10 wherein the second linear polymer is selected from homopolymers of vinylpyrrolidone, acrylic acid, methacrylic acid, acrylic acid esters, methacrylic acid esters, vinyl alcohol, vinyl acetate, caprolactone, substituted caprolactones, ethylene oxide, propylene oxide, ethylene glycol, propylene glycol; copolymers of vinylpyrrolidone, acrylic acid and methacrylic acid, vinyl alcohol, vinyl acetate, caprolactone, substituted caprolactones, ethylene oxide, propylene oxide, ethylene glycol, propylene glycol; and combinations thereof.
- 16. The polymeric film composition of claim 10 wherein the composition further comprises an ethylenically unsaturated monomer and a photoinitiator system.
- 17. The polymeric film composition of claim 1 wherein the composition further comprises hydrophilic colloidal silica.
- 18. The polymeric film composition of claim 17 wherein the hydrophilic colloidal silica is fumed silica.
- 19. The polymeric film composition of claim 17 wherein the composition further comprises a second linear polymer having functionality capable of hydrogen bonding.
- 20. The polymeric film composition of claim 21 wherein the second linear polymer is selected from homopolymers of vinylpyrrolidone, acrylic acid, methacrylic acid, acrylic acid esters, methacrylic acid esters, vinyl alcohol, vinyl acetate, caprolactone, substituted caprolactones, ethylene oxide, propylene oxide, ethylene glycol, propylene glycol; copolymers of vinylpyrrolidone, acrylic acid and methacrylic acid, acrylic acid esters, methacrylic acid esters,vinyl alcohol, vinyl acetate, caprolactone, substituted caprolactones, ethylene oxide, propylene oxide, ethylene glycol, propylene glycol; and combinations thereof.
- 21. The polymeric film composition of Clair 17 wherein the binder comprises a comb polymer comprising a backbone and more than one polymeric arm, wherein one of the following conditions is met:
I. (i) the polymeric arm is a copolymer comprising 40-80% by weight of a monomer having a functionality capable of hydrogen bonding; (ii) the number average molecular weight of the polymeric arm is greater than 2500; and (iii) the weight ratio of backbone to arm is less than 3; OR II. (i) the polymeric arm is a copolymer comprising greater than 70% by weight of a monomer having a functionality capable of hydrogen bonding; (ii) the number average molecular weight of the polymeric arm is less than 2500; and (iii) the weight ratio of backbone to arm is less than 4.
- 22. The polymeric film composition of claim 16 wherein the composition further comprises an ethylenically unsaturated monomer and a photoinitiator system.
- 23. A process for preparing a patterned photoresist on a substrate, said process comprising the steps:
(1) providing a composition comprising (a) a polymeric binder having a weight average molecular weight greater than 20,000; (b) an ethylenically unsaturated monomer and (c) a photo initiator system; (2) forming a film from the composition wherein the film has a rheology wherein at a predetermined first lower temperature and a shear stress of 10,000 Pa the film has a viscosity of at least 3×106 Pa-s, and further wherein at a predetermined second higher temperature and a shear stress of 50,000 Pa the film has a viscosity of no greater than 1×104 Pa-s; (3) laminating the film to a substrate; (4) imagewise exposing the film to actinic radiation; and (5) treating with a developer solution.
- 24. The process of claim 23 wherein the substrate comprises a layer of copper on a support, wherein the film is laminated to the copper layer.
- 25. The process of claim 23 wherein the substrate comprises a printed circuit board.
- 26. The process of claim 23 wherein the binder comprises a comb polymer comprising a backbone and more than one polymeric arm, wherein one of the following conditions is met:
I. (i) the polymeric arm is a copolymer comprising 40-80% by weight of a monomer having a functionality capable of hydrogen bonding; (ii) the number average molecular weight of the polymeric arm is greater than 2500; and (iii) the weight ratio of backbone to arm is less than 3; OR II. (i) the polymeric arm is a copolymer comprising greater than 70% by weight of a monomer having a functionality capable of hydrogen bonding; (ii) the number average molecular weight of the polymeric arm is less than 2500; and (iii) the weight ratio of backbone to arm is less than 4.
- 27. The process of claim 23 wherein the binder comprises:
A. a comb polymer comprising a backbone and more than one polymeric arm, wherein (i) the polymeric arm is a copolymer comprising 20-40% by weight of a monomer having a functionality capable of hydrogen bonding and (ii) the weight ratio of backbone to arm is less than 3; and B. a second linear polymer having functionality capable of hydrogen bonding.
- 28. The process of claim 23 wherein the film composition further comprises hydrophilic colloidal silica.
- 29. The process of claim 28 wherein the hydrophilic colloidal silica is fumed silica.
- 30. The process of claim 28 wherein the film composition further comprises a second linear polymer having functionality capable of hydrogen bonding.
- 31. An element comprising a substrate and a layer of a polymeric film composition, said polymeric film composition comprising a polymeric binder having hydrogen bonding functionality and having a weight average molecular weight greater than 20,000, wherein at a predetermined first lower temperature and a shear stress of 10,000 Pa the film has a viscosity of at least 3×106 Pa-s, and further wherein at a predetermined second higher temperature and a shear stress of 50,000 Pa the film has a viscosity of no greater than 1×104 Pa-s.
- 32. A continuous sheet substrate having applied to one surface thereof a polymeric film composition comprising a polymeric binder having hydrogen bonding functionality and having a weight average molecular weight greater than 20,000, wherein at a predetermined first lower temperature and a shear stress of 10,000 Pa the film has a viscosity of at least 3×106 Pa-s, and further wherein at a predetermined second higher temperature and a shear stress of 50,000 Pa the film has a viscosity of no greater than 1×104 Pa-s, said sheet being capable of being stored as a roll of at least 50 layers without exhibiting flow around the edges at room temperature.
RELATED APPLICATION
[0001] This is a Continuation application of Ser. No. 09/260,835, filed Mar. 2, 1999, which is a Continuation-in-Part application of Ser. No. 09/035,454, filed Mar. 5, 1998.
Continuations (1)
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Number |
Date |
Country |
Parent |
09260835 |
Mar 1999 |
US |
Child |
09891642 |
Jun 2001 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09035454 |
Mar 1998 |
US |
Child |
09260835 |
Mar 1999 |
US |