Claims
- 1. A branched polysiloxane having the general formula:
- 2. The branched polysiloxane of claim 1, wherein X comprises mercapto, amino or carboxylic acid.
- 3. The branched polysiloxane of claim 2, wherein X comprises amino.
- 4. The branched polysiloxane of claim 3, wherein X is
- 5. The branched polysiloxane of claim 2, wherein the branched polysiloxane has a mole ratio of functional group:Si atom range from about 1:5400 to 1:28.
- 6. The branched polysiloxane of claim 5, wherein the branched polysiloxane has a mole ratio of functional group:Si atom range from about 1:2000 to 1:60.
- 7. The branched polysiloxane of claim 5, wherein the branched polysiloxane has a viscosity from about 10 to about 200,000 cSt at 25° C.
- 8. The branched polysiloxane of claim 7, wherein the branched polysiloxane has a viscosity from about 200 to about 60,000 cSt at 25° C.
- 9. The branched polysiloxane of claim 7, wherein the branched polysiloxane has a weight average molecular weight range from about 800,000 to about 2,100 Daltons.
- 10. The branched polysiloxane of claim 9, wherein the branched polysiloxane has a weight average molecular weight range from about 150,000 to about 9,000 Daltons.
- 11. The branched polysiloxane of claim 9, wherein the branched polysiloxane comprises a branched dimethylsiloxane, diphenylsiloxane, methyl-3,3,3-trifluoropropylsiloxane, diphenyl(dimethyl)siloxane, methylphenylsiloxane, or copolymers thereof.
- 12. The branched polysiloxane of claim 11, wherein the branched polysiloxane comprises a branched dimethylsiloxane.
- 13. The branched polysiloxane of claim 9, wherein the branched polysiloxane has the formula:
- 14. The branched polysiloxane of claim 13, wherein the branched polysiloxane has the formula:
- 15. The branched polysiloxane of claim 14, wherein the branched polysiloxane has the formula:
- 16. The branched polysiloxane of claim 15, wherein the branched polysiloxane has the formula:
- 17. The branched polysiloxane of claim 9, wherein the branched polysiloxane has the formula:
- 18. The branched polysiloxane of claim 17, wherein the branched polysiloxane has the formula:
- 19. The branched polysiloxane of claim 9, wherein the branched polysiloxane is a copolymer having the formula:
- 20. The branched polysiloxane of claim 19, wherein the branched polysiloxane is a copolymer having the formula:
- 21. The branched polysiloxane of claim 9, wherein the branched polysiloxane is a copolymer having the formula:
- 22. The branched polysiloxane of claim 21, wherein the branched polysiloxane is a copolymer having the formula:
- 23. The branched polysiloxane of claim 9, wherein the branched polysiloxane is a copolymer having the formula:
- 24. The branched polysiloxane of claim 23, wherein the branched polysiloxane is a copolymer having the formula:
- 25. The branched polysiloxane of claim 9, wherein the branched polysiloxane has a thermal stability of at least about 120° C.
- 26. The branched polysiloxane of claim 25, wherein the branched polysiloxane has a thermal stability of at least about 150° C.
- 27. The branched polysiloxane of claim 1, wherein the branched polysiloxane has a viscosity from about 200 to about 60,000 cSt, a weight average molecular weight range from about 150,000 to about 9,000 Daltons, a mole ratio of functional group:Si atom range from about 1:2000 to 1:60;
wherein the branched polysiloxane is dimethylsiloxane; and wherein the functional group is amino.
- 28. A coating composition comprising at least one diluent and at least one branched polysiloxane according to claim 1.
- 29. The composition of claim 28, wherein the diluent comprises functional polysiloxanes, non-functional polysiloxanes or mixtures thereof.
- 30. The composition of claim 29, wherein the diluent comprises nonfunctional polysiloxanes optionally having diphenylsiloxane or methylphenylsiloxane groups.
- 31. The composition of claim 29, wherein the polysiloxanes have a viscosity from about 50 to about 200,000 cSt at 25° C.
- 32. The composition of claim 31, wherein the polysiloxanes have a viscosity from about 250 to about 60,000 cSt at 25° C.
- 33. The composition of claim 29, wherein the final concentration of branched polysiloxane present in diluent is from about 0.5% by weight to 80% by weight based on the total weight of the coating composition.
- 34. The composition of claim 33, wherein the final concentration of branched polysiloxane present in diluent is from about 2% by weight to 15% by weight based on the total weight of the coating composition.
- 35. The composition of claim 33, wherein the final viscosity of branched polysiloxane in diluent is from about 100 to about 100,000 cSt at 25° C.
- 36. The composition of claim 35, wherein the final viscosity of branched polysiloxane in diluent is from about 200 to about 60,000 cSt at 25° C.
- 37. A fuser member comprising a (a) substrate; (b) fluoropolymer and (c) polymeric release agent wherein the polymeric release agent comprises at least one branched polysiloxane having the formula:
- 38. The apparatus of claim 37, wherein X comprises mercapto, amino or carboxylic acid.
- 39. The apparatus of claim 38, wherein X comprises amino.
- 40. The apparatus of claim 39, wherein X is
- 41. The apparatus of claim 37, wherein the fluoropolymer comprises a fluoroelastomer or a fluorocarbon resin.
- 42. The apparatus of claim 41, wherein the fluoroelastomer comprises a copolymer of vinylidene fluoride with hexafluoropropylene, copolymer of vinylidene fluoride with tetrafluoroethylene and hexafluoropropylene, copolymer of perfluoroalkylvinylether with tetrafluoroethylene, copolymer of ethylene perfluoroalkylvinylether with tetrafluoroethylene, or mixtures thereof.
- 43. The apparatus of claim 42, wherein the vinylidene fluoride is present in the fluoroelastomer at a concentration from about 30 to about 90 mole percent.
- 44. The apparatus of claim 42, wherein the hexafluoropropylene is present in the fluoroelastomer at a concentration from about 10 to about 60 mole percent.
- 45. The apparatus of claim 42, wherein the tetrafluoroethylene is present in the fluoroelastomer at a concentration from about 0 to about 50 mole percent.
- 46. The apparatus of claim 41, wherein the fluoroelastomer further comprises a filler.
- 47. The apparatus of claim 46, wherein the filler is a metal, metal alloy, metal oxide, metal salt, silicon carbide, boron nitride, graphite or silicon dioxide.
- 48. The apparatus of claim 47, wherein the metal oxide comprises aluminum oxide, iron oxide, tin oxide, copper oxide, zinc oxide or silicon oxide.
- 49. The apparatus of claim 48, wherein the filler is present in a concentration range from about 0% by volume to about 40% by volume based on the weight of the fluoroelastomer.
- 50. The apparatus of claim 49, wherein the filler is present in a concentration range from about 1% by volume to about 35% by volume based on the weight of the fluoroelastomer.
- 51. A method for preparing a monofunctional branched polysiloxane which comprises reacting at least one of a first compound selected from: (a) a functional silanol terminated siloxane, or (b) a functionally terminated siloxane, and at least one second compound selected from: (c) a tri- or tetra-siloxy functional silane, or (d) a non-functional branched siloxane comprising tris or tetrakis siloxy units, in the presence of a basic or acidic catalyst, wherein the monofunctional branched polysiloxane has the general formula:
- 52. The method of claim 51, wherein X comprises mercapto, amino or carboxylic acid.
- 53. The method of claim 51, wherein X comprises amino.
- 54. The method of claim 53, wherein X is
- 55. The method of claim 51, wherein the functional silanol terminated siloxane has the formula:
- 56. The method of claim 55, wherein the functional silanol terminated siloxane comprises silanol terminated polydimethylsiloxane.
- 57. The method claim 55, wherein the functional terminated siloxane has the formula:
- 58. The method of claim 51, wherein the siloxy functional silane has the tri-siloxy general formula:
- 59. The method of claim 58, wherein the tri-siloxy functional silane comprises methyl trimethoxysilane or methyl triethoxysilane.
- 60. The method of claim 51, wherein the tetra-siloxy functional silane comprises tetramethoxysilane or tetraethoxysilane.
- 61. The method of claim 51, wherein the branched polysiloxane is prepared at a temperature range from about 20° C. to about 180° C.
- 62. The method of claim 51, wherein the branched polysiloxane is prepared at a temperature range from about 60° C. to about 120° C.
- 63. The method of claim 51, wherein the branched polysiloxane is prepared at a pH range from about 10 to about 14.
- 64. The method of claim 63, wherein the branched polysiloxane is prepared in the presence of a basic catalyst.
- 65. The method of claim 64, wherein the basic catalyst comprises potassium hydroxide, tetramethylammonium hydroxide, tetrabutylphosphonium hydroxide, silanoates or mixtures thereof.
- 66. The method of claim 51, wherein the branched polysiloxane is prepared at a pH range from about 2 to about 4.
- 67. The method of claim 66, wherein the branched polysiloxane is prepared in the presence of an acidic catalyst.
- 68. The method of claim 67, wherein the acidic catalyst comprises hydrochloric acid, sulfuric acid, trifluoromethanesulfonic acid or mixtures thereof.
RELATED APPLICATIONS
[0001] This application claims benefit under 35 U.S.C. §119 (e) of prior U.S. Provisional Patent Application, Serial No. 60/305,874, filed Jul. 18, 2001, which is incorporated herein by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60305874 |
Jul 2001 |
US |