Claims
- 1. A method of making a polymer nanocomposite comprising:
combining a polymer dispersion with a clay mineral dispersion to form a clay-polymer dispersion; adding a flocculating agent to the clay-polymer dispersion mixture to form the polymer nanocomposite.
- 2. The method of claim 1, further comprising forming a polymer dispersion by adding a polymer to a liquid carrier.
- 3. The method of claim 1, further comprising forming a clay mineral dispersion by adding a clay mineral to a liquid carrier.
- 4. The method of claim 1, wherein the polymer dispersion comprises a latex.
- 5. The method of claim 1, wherein the polymer dispersion comprises a styrene-butadiene.
- 6. The method of claim 1 wherein the polymer dispersion comprises a polyurethane dispersion.
- 7. The method of claim 1 wherein the polymer dispersion comprises polyvinyl chloride, an acrylic rubber, a butyl-containing polymer, a chlorosulfonated polyethylene rubber, a fluoroelastomer, or a polyisoprene.
- 8. The method of claim 1 wherein the polymer dispersion comprises a negatively charged polymer and wherein the flocculating agent comprises a positively charged compound.
- 9. The method of claim 1 wherein the polymer dispersion comprises a positively charged polymer and wherein the flocculating agent comprises a negatively charged compound.
- 10. The method of claim 1, wherein the polymer dispersion comprises a polymer and a surfactant dispersed in a liquid carrier.
- 11. The method of claim 1, wherein the polymer dispersion comprises up to about 80% by weight of the polymer.
- 12. The method of claim 1, further comprising forming the polymer dispersion by subjecting a mixture of the polymer in the first liquid carrier to a shearing process.
- 13. The method of claim 1, wherein the clay mineral dispersion comprises montmorillonite.
- 14. The method of claim 1, wherein the clay mineral dispersion comprises bentonite.
- 15. The method of claim 1, wherein the clay mineral dispersion comprises hectorite, saponite, attapulgite, beidelite, stevensite, sauconite, nontronite, Laponite, or sepiolite.
- 16. The method of claim 1, wherein the clay mineral dispersion comprises hydrotalcite.
- 17. The method of claim 1, wherein the clay mineral dispersion comprises between about 1 to about 10% by weight of the clay mineral.
- 18. The method of claim 1, further comprising forming the clay dispersion by subjecting a mixture of the clay mineral in the second liquid carrier to a high shear process.
- 19. The method of claim 1, wherein the clay-polymer dispersion comprises up to about 90% by weight of clay mineral with respect to the weight of polymer in the clay-polymer dispersion.
- 20. The method of claim 1, wherein the clay-polymer dispersion comprises up to about 30% by weight of clay mineral with respect to the weight of polymer in the clay-polymer dispersion.
- 21. The method of claim 1, wherein the clay-polymer dispersion comprises up to about 10% by weight of clay mineral with respect to the weight of polymer in the clay-polymer dispersion.
- 22. The method of claim 1 wherein the flocculating agent comprises an organic salt.
- 23. The method of claim 1 wherein the flocculating agent comprises a quatemnary ammonium compound.
- 24. The method of claim 1 wherein the flocculating agent comprises a quaternary ammonium compound having the structure:
- 25. The method of claim 1 wherein the flocculating agent comprises an inorganic salt.
- 26. The method of claim 1 wherein the flocculating agent comprises a Group I metal salt.
- 27. The method of claim 1 wherein the flocculating agent comprises a Group II metal salt.
- 28. The method of claim 1 wherein the flocculating agent comprises a mineral compound.
- 29. The method of claim 1, wherein the flocculating agent comprises between about 1% to about 10% by weight of the clay-polymer dispersion.
- 30. A polymer nanocomposite prepared by the method comprising:
combining a polymer dispersion with a clay mineral dispersion to form a clay-polymer dispersion; adding a flocculating agent to the clay-polymer dispersion mixture to form the polymer nanocomposite.
- 31. The polymer nanocomposite of claim 30, wherein the method further comprises forming a polymer dispersion by adding a polymer to a liquid carrier.
- 32. The polymer nanocomposite of claim 30, wherein the method further comprises forming a clay mineral dispersion by adding a clay mineral to a liquid carrier.
- 33. The polymer nanocomposite of claim 30, wherein the polymer dispersion comprises a latex.
- 34. The polymer nanocomposite of claim 30, wherein the polymer dispersion comprises a styrene-butadiene.
- 35. The polymer nanocomposite of claim 30, wherein the polymer dispersion comprises a polyurethane dispersion.
- 36. The polymer nanocomposite of claim 30, wherein the polymer dispersion comprises polyvinyl chloride, an acrylic rubber, a butyl-containing polymer, a chlorosulfonated polyethylene rubber, a fluoroelastomer, or a polyisoprene.
- 37. The polymer nanocomposite of claim 30, wherein the polymer dispersion comprises a negatively charged polymer and wherein the flocculating agent comprises a positively charged compound.
- 38. The polymer nanocomposite of claim 30 wherein the polymer dispersion comprises a positively charged polymer and wherein the flocculating agent comprises a negatively charged compound.
- 39. The polymer nanocomposite of claim 30, wherein the polymer dispersion comprises a polymer and a surfactant dispersed in a liquid carrier.
- 40. The polymer nanocomposite of claim 30, wherein the polymer dispersion comprises up to about 80% by weight of the polymer.
- 41. The polymer nanocomposite of claim 30, wherein the method further comprises forming the polymer dispersion by subjecting a mixture of the polymer in the first liquid carrier to a shearing process.
- 42. The polymer nanocomposite of claim 30, wherein the clay mineral comprises montmorillonite.
- 43. The polymer nanocomposite of claim 30, wherein the clay mineral comprises bentonite.
- 44. The polymer nanocomposite of claim 30, wherein the clay mineral comprises hectorite, saponite, attapulgite, beidelite, stevensite, sauconite, nontronite, Laponite, or sepiolite.
- 45. The polymer nanocomposite of claim 30, wherein the clay mineral comprises hydrotalcite.
- 46. The polymer nanocomposite of claim 30, wherein the clay mineral dispersion comprises between about 1 to about 10% by weight of the clay mineral.
- 47. The polymer nanocomposite of claim 30, wherein the method further comprises forming the clay dispersion by subjecting a mixture of the clay mineral in the second liquid carrier to a high shear process.
- 48. The polymer nanocomposite of claim 30, wherein the clay-polymer dispersion comprises up to about 90% by weight of clay mineral with respect to the weight of polymer in the clay-polymer dispersion.
- 49. The polymer nanocomposite of claim 30, wherein the clay-polymer dispersion comprises up to about 30% by weight of clay mineral with respect to the weight of polymer in the clay-polymer dispersion.
- 50. The polymer nanocomposite of claim 30, wherein the clay-polymer dispersion comprises up to about 10% by weight of clay mineral with respect to the weight of polymer in the clay-polymer dispersion.
- 51. The polymer nanocomposite of claim 30, wherein the flocculating agent comprises an organic salt.
- 52. The polymer nanocomposite of claim 30, wherein the flocculating agent comprises a quaternary ammonium compound.
- 53. The polymer nanocomposite of claim 30, wherein the flocculating agent comprises a quaternary ammonium compound having the structure:
- 54. The polymer nanocomposite of claim 30, wherein the flocculating agent comprises an inorganic salt.
- 55. The polymer nanocomposite of claim 30, wherein the flocculating agent comprises a Group I metal salt.
- 56. The polymer nanocomposite of claim 30, wherein the flocculating agent comprises a Group II metal salt.
- 57. The polymer nanocomposite of claim 30, wherein the flocculating agent comprises a mineral compound.
- 58. The polymer nanocomposite of claim 30, wherein the flocculating agent comprises between about 1% to about 10% by weight of the clay-polymer dispersion.
- 59. A method of making a polymer nanocomposite comprising:
forming a clay mineral dispersion by adding a clay mineral and an onium compound to a liquid carrier, wherein the onium compound is present in excess of the cation exchange capacity of the clay mineral such that a portion of the onium compound present is not bound to the clay mineral; combining a polymer dispersion with the clay mineral dispersion to form the polymer nanocomposite.
- 60. The method of claim 59, wherein the onium compound comprises a quaternary ammonium compound.
- 61. The method of claim 59 wherein the onium compound comprises a quaternary ammonium compound having the structure:
- 62. The method of claim 59, wherein the amount of onium compound is up to about 3 times the cation exchange capacity of the clay mineral.
- 63. The method of claim 59, further comprising forming a polymer dispersion by adding a polymer to a liquid carrier.
- 64. The method of claim 59, wherein the polymer dispersion comprises a latex.
- 65. The method of claim 59, wherein the polymer dispersion comprises a styrene-butadiene.
- 66. The method of claim 59 wherein the polymer dispersion comprises a polyurethane dispersion.
- 67. The method of claim 59 wherein the polymer dispersion comprises polyvinyl chloride, an acrylic rubber, a butyl-containing polymer, a chlorosulfonated polyethylene rubber, a fluoroelastomer, or a polyisoprene.
- 68. The method of claim 59, wherein the polymer dispersion comprises a polymer and a surfactant dispersed in a liquid carrier.
- 69. The method of claim 59, wherein the polymer dispersion comprises up to about 80% by weight of the polymer.
- 70. The method of claim 59, further comprising forming the polymer dispersion by subjecting a mixture of the polymer in the first liquid carrier to a shearing process.
- 71. The method of claim 59, wherein the clay mineral comprises montmorillonite.
- 72. The method of claim 59, wherein the clay mineral comprises bentonite.
- 73. The method of claim 59, wherein the clay mineral comprises hectorite, saponite, attapulgite, beidelite, stevensite, sauconite, nontronite, Laponite, or sepiolite.
- 74. The method of claim 59, wherein the mineral clay comprises hydrotalcite.
- 75. The method of claim 59, wherein the clay mineral dispersion comprises between about 1 to about 10% by weight of the clay mineral.
- 76. The method of claim 59, wherein forming a clay dispersion comprises subjecting a mixture of the clay mineral in the liquid carrier to a high shear process.
- 77. The method of claim 59, wherein the clay-polymer dispersion comprises up to about 90% by weight of clay mineral with respect to the weight of polymer in the clay-polymer dispersion.
- 78. The method of claim 59, wherein the clay-polymer dispersion comprises up to about 30% by weight of clay mineral with respect to the weight of polymer in the clay-polymer dispersion.
- 79. The method of claim 59, wherein the clay-polymer dispersion comprises up to about 10% by weight of clay mineral with respect to the weight of polymer in the clay-polymer dispersion.
- 80. A polymer nanocomposite prepared by the method comprising:
forming a clay mineral dispersion by adding a clay mineral and an onium compound to a liquid carrier, wherein the onium compound is present in excess of the cation exchange capacity of the clay mineral such that a portion of the onium compound present is not bound to the clay mineral; combining the polymer dispersion with the clay mineral dispersion to form the polymer nanocomposite.
- 81. The polymer nanocomposite of claim 80, wherein the onium compound comprises a quaternary ammonium compound.
- 82. The polymer nanocomposite of claim 80, wherein the onium compound comprises a quaternary ammonium compound having the structure:
- 83. The polymer nanocomposite of claim 80, wherein the amount of onium compound is up to about 3 times the cation exchange capacity of the clay mineral.
- 84. The polymer nanocomposite of claim 80, wherein the method further comprises forming a polymer dispersion by adding a polymer to a liquid carrier.
- 85. The polymer nanocomposite of claim 80, wherein the polymer dispersion comprises a latex.
- 86. The polymer nanocomposite of claim 80, wherein the polymer dispersion comprises a styrene-butadiene.
- 87. The polymer nanocomposite of claim 80, wherein the polymer dispersion comprises a polyurethane dispersion.
- 88. The polymer nanocomposite of claim 80, wherein the polymer dispersion comprises polyvinyl chloride, an acrylic rubber, a butyl-containing polymer, a chlorosulfonated polyethylene rubber, a fluoroelastomer, or a polyisoprene.
- 89. The polymer nanocomposite of claim 80, wherein the polymer dispersion comprises a polymer and a surfactant dispersed in a liquid carrier.
- 90. The polymer nanocomposite of claim 80, wherein the polymer dispersion comprises up to about 80% by weight of the polymer.
- 91. The polymer nanocomposite of claim 80, wherein the method further comprises forming the polymer dispersion by subjecting a mixture of the polymer in a liquid carrier to a shearing process.
- 92. The polymer nanocomposite of claim 80, wherein the clay mineral comprises montmorillonite.
- 93. The polymer nanocomposite of claim 80, wherein the clay mineral comprises bentonite.
- 94. The polymer nanocomposite of claim 80, wherein the clay mineral comprises hectorite, saponite, attapulgite, beidelite, stevensite, sauconite, nontronite, Laponite, or sepiolite.
- 95. The polymer nanocompite of claim 80, wherein the clay mineral comprises hydrotalcite.
- 96. The polymer nanocomposite of claim 80, wherein the clay mineral dispersion comprises between about 1 to about 10% by weight of the clay mineral.
- 97. The polymer nanocomposite of claim 80, wherein the method further comprises forming a clay dispersion by subjecting a mixture of the clay mineral in the second liquid carrier to a high shear process.
- 98. The polymer nanocomposite of claim 80, wherein the clay-polymer dispersion comprises up to about 90% by weight of clay mineral with respect to the weight of polymer in the clay-polymer dispersion.
- 99. The polymer nanocomposite of claim 80, wherein the clay-polymer dispersion comprises up to about 30% by weight of clay mineral with respect to the weight of polymer in the clay-polymer dispersion.
- 100. The polymer nanocomposite of claim 80, wherein the clay-polymer dispersion comprises up to about 10% by weight of clay mineral with respect to the weight of polymer in the clay-polymer dispersion.
PRIORITY CLAIM
[0001] This application claims priority to U.S. Provisional Patent Application No. 60/273,271 filed on Mar. 2, 2001 entitled “Preparation of Polymer Nanocomposites by Dispersion Destabilization.”
Provisional Applications (1)
|
Number |
Date |
Country |
|
60273271 |
Mar 2001 |
US |