Claims
- 1. An article comprising a matrix polymer and clay wherein said clay is intercalated with a block copolymer, wherein said block copolymer comprises a hydrophilic block capable of intercalating said clay and a matrix compatible block compatible with said matrix polymer wherein said block copolymer comprises three blocks.
- 2. The article of claim 1 wherein said matrix polymer consisting of polyester.
- 3. The article of claim 2 wherein said polyester is selected from the group comprising poly(ethylene terephthalate), poly(butylene terephthalate), poly(1,4-cyclohexylene dimethylene terephthalate), poly(ethylene naphthalate) and amorphous glycol modified poly(ethylene terepthalate).
- 4. The article of claim 1 wherein said hydrophilic block comprises at least one member selected from the group consisting of poly(alkylene oxide), poly 6, (2-ethyloxazolines), poly(ethyleneimine), poly(vinylpyrrolidone), poly(vinyl alcohol), polyacrylamides, polyacrylonitrile, polysaccharides and dextrans.
- 5. The article of claim 1 wherein said hydrophilic block comprises at least one member selected from the group consisting of poly(alkylene oxide), poly 6, (2-ethyloxazolines), polysaccharide, poly(vinylpyrrolidone), poly(vinyl alcohol) and poly(vinylacetate).
- 6. The article of claim 1 wherein said hydrophilic block comprises poly(ethylene oxide).
- 7. The article of claim 1 wherein said hydrophilic block comprises polysaccharide.
- 8. The article of claim 1 wherein said hydrophilic block comprises poly(vinyl pyrrolidone).
- 9. The article of claim 1 wherein said hydrophilic block comprises poly(vinyl acetate).
- 10. The article of claim 1 wherein said matrix compatible block comprises polyester.
- 11. The article of claim 1 wherein said matrix compatible block consists of at least one member selected from the group consisting of polyester, acrylic, amide, polypropiolactone, poly β-butyrolactone, poly δ-valerolactone, poly ε-caprolactam and polycaprolactone.
- 12. The article of claim 1 wherein said clay comprises smectite clay.
- 13. The article of claim 1 wherein said clay comprises synthetic smectite clay.
- 14. The article of claim 1 wherein said clay comprises layered double hydroxide clay.
- 15. The article of claim 1 wherein said block copolymer has the structure A-B-A, wherein A is a hydrophilic member selected from the group consisting of poly(alkylene oxide), poly 6, (2-ethyloxazolines), poly(ethyleneimine), poly(vinylpyrrolidone), poly(vinyl alcohol), polyacrylamides, polyacrylonitrile, polysaccharides and dextrans and B is an oleophilic member selected from the group consisting of polyester, polyacrylic, polyamide, polypropiolactone, poly βbutyrolactone, poly δ-valerolactone, poly ε-caprolactam and polycaprolactone.
- 16. The article of claim 1 wherein said block copolymer has the structure A-B-A, wherein A is a member selected from the group consisting of poly(alkylene oxide), poly 6, (2-ethyloxazolines), polysaccharide, poly(vinylpyrrolidone), poly(vinyl alcohol) and poly(vinylacetate) and B is a member selected from the group consisting of polyester, polycaprolactone and polyamide.
- 17. The article of claim 1 wherein said block copolymer comprises three blocks and said matrix comprises a copolymer compatible with at least one block of said copolymer.
- 18. The article of claim 1 wherein said block copolymer comprises three blocks and said matrix comprises a blend of polymers compatible with at least one block of said copolymer.
- 19. The article of claim 1 wherein individual polymers in the blend of copolymers are compatible with separate blocks of said copolymers.
- 20. The article of claim 1 wherein said block copolymer further comprises a block that does not intercalate clay.
- 21. The article of claim 20 wherein said block copolymer that does not intercalate clay comprises polyester.
- 22. The article of claim 1 wherein said block copolymer further comprises a block comprising an oleophilic polymer.
- 23. The article of claim 1 wherein the ratio by weight of clay to block copolymer is between 1:99 and 99:1.
- 24. The article of claim 1 wherein the ratio by weight of clay to block copolymer is between 80:20 and 60:40.
- 25. The article of claim 1 wherein said clay has an aspect ratio of >10:1.
- 26. The article of claim 1 wherein said article is a support.
- 27. The article of claim 1 wherein said article is a layer in a multilayer structure.
- 28. The article of claim 1 wherein said clay comprises a weight % less than 70%.
- 29. The article of claim 1 wherein said clay comprises a weight % less than 20%.
- 30. An article comprising a matrix polymer and clay wherein said clay is intercalated with a block copolymer, wherein said block copolymer comprises a hydrophilic block capable of intercalating said clay and a matrix compatible block compatible with said matrix polymer wherein said matrix compatible block comprises 50 to 500 monomer repeat units of caprolactone and said polymer matrix comprises polyester.
- 31. The article of claim 30 wherein said polyester is selected from the group consisting of poly(ethylene terephthalate), poly(butylene terephthalate), poly(1,4-cyclohexylene dimethylene terephthalate), poly(ethylene naphthalate) and amorphous glycol modified poly(ethylene terepthalate).
- 32. The article of claim 30 wherein said hydrophilic block consisting of at least one member selected from the group of poly(alkylene oxide), poly 6, (2-ethyloxazolines), poly(ethyleneimine), poly(vinylpyrrolidone), poly(vinyl alcohol), polyacrylamides, polyacrylonitrile, polysaccharides, (2-ethyloxazolines), poly(vinylacetate), and dextrans.
- 33. The article of claim 30 wherein said hydrophilic block comprises poly(ethylene oxide).
- 34. The article of claim 30 wherein said hydrophilic block comprises polysaccharide.
- 35. The article of claim 30 wherein said hydrophilic block comprises poly(vinyl pyrrolidone).
- 36. The article of claim 30 wherein said hydrophilic block comprises poly(vinyl acetate).
- 37. The article of claim 30 wherein said clay comprises smectite clay.
- 38. The article of claim 30 wherein said clay comprises layered double hydroxide clay.
- 39. The article of claim 30 wherein said block copolymer comprises three blocks.
- 40. The article of claim 30 wherein said block copolymer has the structure A-B-A, wherein A is a hydrophilic member selected from the group consisting of poly(alkylene oxide), poly 6, (2-ethyloxazolines), poly(ethyleneimine), poly(vinylpyrrolidone), poly(vinyl alcohol), polyacrylamides, polyacrylonitrile, polysaccharides, and poly(vinylacetate).
- 41. The article of claim 30 wherein said block copolymer further comprises a block that does not intercalate clay.
- 42. The article of claim 30 wherein the ratio by weight of clay to block copolymer is between 1:99 and 99:1.
- 43. The article of claim 30 wherein said clay has an aspect ratio of >10:1.
- 44. The article of claim 30 wherein said article is a support.
- 45. The article of claim 30 wherein said article is a layer in a multilayer structure.
- 46. The article of claim 30 wherein said clay comprises a weight % less than 70%.
- 47. The article of claim 30 wherein said clay comprises a weight % less than 20%.
CROSS REFERENCE TO RELATED APPLICATIONS
Reference is made to commonly assigned, co-pending U.S. Patent Applications: Publication Number 2003/0099815 to Dontula et al., filed of even date herewith entitled “Ethoxylated Alcohol Intercalated Smectite Materials and Method”; Publication Number 2003/by Majumdar et al., filed of even date herewith entitled “Smectite Clay Intercalated with Polyether Block Polyamide Copolymer”, and Publication Number 2003/1418918 by Dontula et al., filed of even date herewith entitled “Article Utilizing Block Copolymer Intercalated Clay”, disclosures of which are incorporated here by reference.
US Referenced Citations (19)
Foreign Referenced Citations (9)
Number |
Date |
Country |
0 846 660 |
Jun 1998 |
EP |
0 846 661 |
Jun 1998 |
EP |
3-062846 |
Mar 1991 |
JP |
7-166036 |
Jun 1995 |
JP |
8-073710 |
Mar 1996 |
JP |
8-120071 |
May 1996 |
JP |
9304118 |
Mar 1993 |
WO |
9829499 |
Jul 1998 |
WO |
0034393 |
Jun 2000 |
WO |
Non-Patent Literature Citations (2)
Entry |
Ed. T.J. Pinnavia and G.W. Beall, John Wiley & Sons, Ltd. Publishers, Polmer-Clay Nanocomposites, 2000. |
H. van Olphen, John Wiley & Sons, Ltd. Publishers, An Introduction To Clay Colloid Chemistry, 1963, 1977. |