Claims
- 1. A solid substrate having a surface suitable for printing on, prepared by the process comprising:providing a solid substrate having an exposed surface; and directly applying a single image-enhancing composition to the exposed surface, wherein the image-enhancing composition comprises: (a) an image-enhancing agent selected from the group consisting of (i) an acidic salt of a guanidine polymer comprised of monomer units having the structural formula (IV) wherein n is an integer in the range of 1 to 10 inclusive, R3 is hydrogen or lower alkyl, and R4 is hydrogen, alkyl, alkoxy, or hydroxyl-substituted alkoxy; (ii) a mixture of an azetidinium polymer and an acidic salt of a guanidine polymer comprised of monomer units having the structural formula (IV); and (iii) a copolymer comprised of an azetidinium monomer unit and a guanidine monomer unit; wherein the image-enhancing agent represents approximately 5 wt. % to 95 wt. % of the image-enhancing composition, based upon total solids weight of the composition after drying; and (b) approximately 1 wt. % to 40 wt. % of a film-forming binder composition based upon total solids weight of the composition after drying, in (c) a liquid vehicle.
- 2. The substrate of claim 1, wherein the image-enhancing composition is applied to the exposed surface as a coating on the substrate.
- 3. The substrate of claim 1, wherein application of the image-enhancing composition to the exposed surface of the substrate results in infiltration of the substrate with the composition.
- 4. The substrate of claim 1, wherein the substrate is comprised of an inorganic oxide.
- 5. The substrate of claim 1, wherein the substrate is metallic.
- 6. The substrate of claim 1, wherein the substrate comprises a laminate.
- 7. The substrate of claim 1, wherein the image-enhancing agent comprises an acidic salt of a guanidine polymer comprised of monomer units having the structure of formula (IV).
- 8. The substrate of claim 7, wherein the guanidine polymer is a homopolymer.
- 9. The substrate of claim 7, wherein the guanidine polymer is a copolymer.
- 10. The substrate of claim 7, wherein R3 and R4 are hydrogen.
- 11. The substrate of claim 1, wherein the image-enhancing agent comprises a mixture of an azetidinium polymer and an acidic salt of a guanidine polymer comprised of monomer units having the structural formula (IV).
- 12. The substrate of claim 11, wherein the azetidinium polymer is comprised of monomer units having the structural formula in which: R1 and R2 are independently lower alkylene; X− is an anionic, organic, or inorganic counterion; and Y1, Y2, and Y3 are selected from the group consisting of hydrogen, hydroxyl, halo, alkoxy, alkyl, amino, carboxy, acetoxy, cyano, and sulfhydryl.
- 13. The substrate of claim 12, wherein: R1 and R2 are methylene; X− is selected from the group consisting of halide, acetate, methane sulfonate, succinate, citrate, malonate, fumarate, oxalate, and hydrogen sulfate; Y1 and Y3 are independently hydrogen or lower alkyl; and Y2 is hydrogen or hydroxyl.
- 14. The substrate of claim 13, wherein, in the azetidinium polymer, Y1 and Y3 are hydrogen and Y2 is hydroxyl.
- 15. The substrate of claim 13, wherein R3 and R4 are hydrogen.
- 16. The substrate of claim 1, wherein the image-enhancing agent is comprised of a copolymer of an azetidinium monomer unit and a guanidine monomer unit.
- 17. The substrate of claim 16, wherein the azetidinium monomer unit has the structural formula in which: R1 and R2 are independently lower alkylene; X− is an anionic, organic, or inorganic counterion; and Y1, Y2, and Y3 are selected from the group consisting of hydrogen, hydroxyl, halo, alkoxy, alkyl, amino, carboxy, acetoxy, cyano, and sulfhydryl; and the guanidine monomer unit has the structural formula wherein n is an integer in the range of 1 to 10 inclusive; R3 is hydrogen or lower alkyl; and R4 is hydrogen, alkyl, alkoxy, or hydroxyl-substituted alkoxy.
- 18. The substrate of claim 17, wherein: R1 and R2 are methylene; X− is selected from the group consisting of halide, acetate, methane sulfonate, succinate, citrate, malonate, fumarate, oxalate, and hydrogen sulfate; Y1 and Y3 are independently hydrogen or lower alkyl; and Y2 is hydrogen or hydroxyl.
- 19. The substrate of claim 1, wherein the liquid vehicle is aqueous.
- 20. The substrate of claim 1, wherein the film-forming binder represents approximately 1 wt. % to 25 wt. % of the image-enhancing composition, based upon total solids weight of the composition after drying.
- 21. The substrate of claim 1, wherein the film-forming binder is selected from the group consisting of polysaccharides, polypeptides, synthetic vinyl polymers, cationic film-forming binders, and derivatives thereof.
- 22. The substrate of claim 21, wherein the film-forming binder is a polysaccharide or a derivative thereof.
- 23. The substrate of claim 22, wherein the polysaccharide is starch.
- 24. The substrate of claim 22, wherein the polysaccharide is a cellulosic polymer.
- 25. The substrate of claim 22, wherein the polysaccharide is dextran.
- 26. The substrate of claim 21, wherein the film-forming binder is a polypeptide.
- 27. The substrate of claim 26, wherein the polypeptide is selected from the group consisting of collagen and gelatin.
- 28. The substrate of claim 21, wherein the film-forming binder is a synthetic vinyl polymer.
- 29. The substrate of claim 28, wherein the synthetic vinyl polymer is selected from the group consisting of poly(vinyl alcohol), poly(vinyl phosphate), poly(vinyl pyrrolidone), vinyl-pyrrolidone-vinyl acetate copolymers, vinyl alcohol-vinyl acetate copolymers, vinyl pyrrolidone-styrene copolymers, and poly(vinylamine).
- 30. The substrate of claim 29, wherein the synthetic vinyl polymer is a vinyl pyrrolidone-styrene copolymer.
- 31. The substrate of claim 29, wherein the synthetic vinyl polymer is poly(vinyl pyrrolidone).
- 32. The substrate of claim 21, wherein the film-forming binder is a cationic film-forming binder.
- 33. The substrate of claim 32, wherein the cationic film-forming binder is selected from the group consisting of quaternized vinyl pyrrolidone-dimethylaminoethyl-methacrylate copolymer, dimethylaminoethyl-methacrylate-co-methyl methacrylate, polydiallyldimethyl ammonium chloride, and quaternized aminoacrylate polymers.
- 34. A method for providing a water-resistant image on a substrate, comprising:applying to the surface of a substrate an image-enhancing composition comprised of an image-enhancing agent selected from the group consisting of (a) an azetidinium polymer, (b) a guanidine polymer, (c) a mixture of an azetidinium polymer and a guanidine polymer, and (d) a copolymer of an azetidinium monomer and a guanidine monomer, to provide a treated substrate; and applying a dye composition to the treated substrate, wherein the dye composition contains a reactive dye having ionizable and/or nucleophilic groups capable of reacting with the image-enhancing agent.
- 35. A printed substrate prepared by the method of claim 34.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation of U.S. patent application Ser. No. 09/282,542, filed Mar. 31, 1999, which claims priority to U.S. provisional patent application No. 60/082,697, filed Apr. 22, 1998, both of which are incorporated herein by reference.
US Referenced Citations (32)
Foreign Referenced Citations (4)
Number |
Date |
Country |
19527100 |
Jan 1997 |
DE |
0286597 |
Oct 1988 |
EP |
61-98580 |
May 1986 |
JP |
9-254529 |
Sep 1997 |
JP |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/082697 |
Apr 1998 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09/282542 |
Mar 1999 |
US |
Child |
10/264382 |
|
US |