Claims
- 1. A polymer comprising structural units having the formula:
- 2. The polymer of claim 1 wherein the tertiary amine charge transport group has an oxidation potential of from about 0.6 to about 1.2 volts versus a standard calomel electrode.
- 3. The polymer of claim 1 wherein A is selected from the group consisting of:
- 4. The polymer of claim 1 wherein d is 1.
- 5. The polymer of claim 4 wherein X is selected from the group consisting of an ester residue —COO— or —OCO—; oxygen; an arylene moiety having up to about 18 carbon atoms; an alkylene moiety having up to about 6 carbon atoms; or combinations thereof.
- 6. The polymer of claim 1 wherein Y is selected from the group consisting of an ester residue —COO— or —OCO—; oxygen; an arylene moiety having up to about 18 carbon atoms; an alkylene moiety having up to about 6 carbon atoms; or combinations thereof.
- 7. The polymer of claim 1 wherein a is from about 0.1 to about 0.9.
- 8. The polymer of claim 1 wherein a is from about 0.15 to about 0.85.
- 9. The polymer of claim 1 wherein a is from about 0.25 to about 0.8.
- 10. The polymer of claim 1 wherein c is 2.
- 11. The polymer of claim 1 wherein c is 3.
- 12. The polymer of claim 1 wherein R′1 and R′2 are independently hydrogen or methyl.
- 13. The polymer of claim 11 wherein G is methoxy.
- 14. A silsesquioxane comprising the polymer of claim 1.
- 15. The polymer of claim 1 wherein G is selected from halogen, hydroxyl, or C1-6 alkoxy groups.
- 16. A silsesquioxane comprising the condensed reaction product of a charge transport polymer comprising structural units having the formula:
- 17. The silsesquioxane of claim 16 wherein G is selected from halogen, hydroxyl, or C1-6 alkoxy groups.
- 18. The silsesquioxane of claim 16 wherein the tertiary amine charge transport group has an oxidation potential of from about 0.6 to about 1.2 volts versus a standard calomel electrode.
- 19. The silsesquioxane of claim 16 wherein A is selected from the group consisting of:
- 20. The silsesquioxane of claim 16 wherein d is 1.
- 21. The silsesquioxane of claim 20 wherein X is selected from the group consisting of an ester residue —COO— or —OCO—; oxygen; an arylene moiety having up to about 18 carbon atoms; an alkylene moiety having up to about 6 carbon atoms; or combinations thereof.
- 22. The silsesquioxane of claim 16 wherein Y is selected from the group consisting of an ester residue —COO— or —OCO—; oxygen; an arylene moiety having up to about 18 carbon atoms; an alkylene moiety having up to about 6 carbon atoms; or combinations thereof.
- 23. The silsesquioxane of claim 16 wherein a is from about 0.1 to about 0.9.
- 24. The silsesquioxane of claim 16 wherein a is from about 0.15 to about 0.85.
- 25. The silsesquioxane of claim 16 wherein a is from about 0.25 to about 0.8.
- 26. The silsesquioxane of claim 16 wherein c is 2.
- 27. The silsesquioxane of claim 16 wherein c is 3.
- 28. The silsesquioxane of claim 16 wherein R′1 and R′2 are independently hydrogen or methyl.
- 29. The silsesquioxane of claim 27 wherein G is methoxy.
- 30. The silsesquioxane of claim 16 wherein the optional at least one additional silane monomer is present.
- 31. The silsesquioxane of claim 30 wherein the at least one silane monomer is an alkyltrialkoxysilane corresponding to the formula:
- 32. The silsesquioxane of claim 31 wherein R1 is selected from the group consisting of alkyls containing 1 to about 12 carbon atoms, fluoroalkyl containing 1 to about 12 carbon atoms, cycloalkyl containing 5 to about 12 carbon atoms, and aryl containing 6 to about 12 carbon atoms.
- 33. The silsesquioxane of claim 31 wherein R1 is an alkyl group containing 1 to about 3 carbon atoms.
- 34. The silsesquioxane of claim 31 wherein R1 is a methyl group.
- 35. The silsesquioxane of claim 30 wherein the at least one additional silane monomer is methyltrimethoxysilane.
- 36. The silsesquioxane of claim 16 wherein the silsesquioxane is prepared in a polar solvent medium.
- 37. The silsesquioxane of claim 36 wherein the polar solvent comprises water.
- 38. The silsesquioxane of claim 37 wherein the polar solvent further comprises a water-miscible organic solvent.
- 39. The silsesquioxane of claim 38 wherein said water-miscible organic solvent is selected from the group consisting of methanol, ethanol, isopropyl alcohol, methyl isobutyl ketone, and mixtures thereof.
- 40. A polymer comprising the polymerized reaction product of:
a) at least one vinyl-substituted, tertiary arylamine monomer having the general formula: 38wherein: A1, A2 and A3 are independently a C1-6 alkyl or C6-50 substituted or unsubstituted aryl group, with the proviso that at least one of A1, A2 and A3 is an aryl group substituted with a vinyl group having the formula CH2═C(R)—(X)d—, where: R is hydrogen or a C1-4 alkyl; X is a divalent bridging moiety; and d is 0 or 1, with b) at least one vinyl-substituted silane monomer having the formula: 39wherein: R is hydrogen or a C1-4 alkyl; Y is a divalent bridging moiety; B1 is independently a C1-18 alkyl, a C1-10 fluoroalkyl, or a C6-12 substituted or unsubstituted aryl; G is independently a hydrolyzable group; and c is an integer from 1 to 3.
- 41. The polymer of claim 40 wherein G is selected from halogen, hydroxyl, or C1-6 alkoxy groups.
- 42. The polymer of claim 40 wherein d is 1.
- 43. The polymer of claim 42 wherein X is selected from the group consisting of an ester residue —COO— or —OCO—; oxygen; an arylene moiety having up to about 18 carbon atoms; an alkylene moiety having up to about 6 carbon atoms; or combinations thereof.
- 44. The polymer of claim 40 wherein Y is selected from the group consisting of an ester residue —COO— or —OCO—; oxygen; an arylene moiety having up to about 18 carbon atoms; an alkylene moiety having up to about 6 carbon atoms; or combinations thereof.
- 45. The polymer of claim 40 wherein the vinyl-substituted tertiary aryl amine is selected from the group consisting of:
- 46. The polymer of claim 40 wherein the amount of the at least one vinyl-substituted, tertiary arylamine monomer is from about 10 mol % to about 90 mol % based on total moles of the at least one vinyl-substituted, tertiary arylamine monomer and the at least one vinyl-substituted alkoxysilane monomer.
- 47. The polymer of claim 40 wherein the amount of the at least one vinyl-substituted, tertiary arylamine monomer is from about 15 mol % to about 85 mol % based on total moles of the at least one vinyl-substituted, tertiary arylamine monomer and the at least one vinyl-substituted alkoxysilane monomer.
- 48. The polymer of claim 40 wherein the amount of the at least one vinyl-substituted, tertiary arylamine monomer is from about 25 mol % to about 80 mol % based on total moles of the at least one vinyl-substituted, tertiary arylamine monomer and the at least one vinyl-substituted alkoxysilane monomer.
- 49. The polymer of claim 40 wherein c is 2.
- 50. The polymer of claim 40 wherein c is 3.
- 51. The polymer of claim 40 wherein G is methoxy.
- 52. A silsesquioxane comprising the polymer of claim 40.
- 53. A polymer comprising the polymerized reaction product of at least one vinyl-substituted, tertiary arylamine monomer and at least one vinyl-substituted silane monomer.
- 54. An electrophotographic element comprising:
an electrically conducting layer; a charge generating layer overlying said electrically conducting layer; and a first charge transport layer overlying said electrically conducting layer, said first charge transport layer comprising the condensed reaction product of a charge transport polymer comprising structural units having the formula: 45wherein: A is a tertiary arylamine charge transport moiety; X is a divalent bridging moiety; Y is a divalent bridging moiety; R′1 and R′2 are independently hydrogen or a C1-4 alkyl; G is independently a hydrolyzable group; R′3 is independently a C1-18 alkyl, a C1-10 fluoroalkyl, or a C6-12 substituted or unsubstituted aryl; c is an integer from 1 to 3; d is 0 or 1; a is a mole fraction of from about 0.01 to about 0.99; b is a mole fraction of from about 0.99 to about 0.01; and a+b is 1.00 or less, with optionally at least one additional silane monomer having at least one functional group thereon.
- 55. The electrophotographic element of claim 54 wherein G is selected from halogen, hydroxyl, or C1-6 alkoxy groups.
- 56. The electrophotographic element of claim 54 wherein the tertiary amine charge transport moiety has an oxidation potential of from about 0.6 to about 1.2 volts versus a standard calomel electrode.
- 57. The electrophotographic element of claim 54 wherein d is 1.
- 58. The electrophotographic element of claim 57 wherein X is selected from the group consisting of an ester residue —COO— or —OCO—; oxygen; an arylene moiety having up to about 18 carbon atoms; an alkylene moiety having up to about 6 carbon atoms; or combinations thereof.
- 59. The electrophotographic element of claim 54 wherein Y is selected from the group consisting of an ester residue —COO— or —OCO—; oxygen; an arylene moiety having up to about 18 carbon atoms; an alkylene moiety having up to about 6 carbon atoms; or combinations thereof.
- 60. The electrophotographic element of claim 54 wherein a is from about 0.1 to about 0.9.
- 61. The electrophotographic element of claim 54 wherein a is from about 0.15 to about 0.85.
- 62. The electrophotographic element of claim 54 wherein a is from about 0.25 to about 0.8.
- 63. The electrophotographic element of claim 54 wherein c is 2.
- 64. The electrophotographic element of claim 54 wherein c is 3.
- 65. The electrophotographic element of claim 54 wherein R′1 and R′2 are independently hydrogen or methyl.
- 66. The electrophotographic element of claim 64 wherein G is methoxy.
- 67. The electrophotographic element of claim 54 wherein the optional at least one silane monomer is present.
- 68. The electrophotographic element of claim 67 wherein the at least one silane monomer is an alkyltrialkoxysilane.
- 69. The electrophotographic element of claim 67 wherein the at least one silane monomer is at least one alkyltrialkoxysilane corresponding to the formula:
- 70. The electrophotographic element of claim 69 wherein R1 is selected from the group consisting of alkyls containing 1 to about 12 carbon atoms, fluoroalkyl containing 1 to about 12 carbon atoms, cycloalkyl containing 5 to about 12 carbon atoms, and aryl containing 6 to about 12 carbon atoms.
- 71. The electrophotographic element of claim 69 wherein R1 is an alkyl group containing 1 to about 3 carbon atoms.
- 72. The electrophotographic element of claim 69 wherein R1 is a methyl group.
- 73. The electrophotographic element of claim 67 wherein the at least one silane monomer is methyltrimethoxysilane.
- 74. The electrophotographic element of claim 54 wherein A is selected from the group consisting of:
- 75. The electrophotographic element of claim 54 wherein the first charge transport layer is an overcoat layer overlying the charge generation layer.
- 76. The electrophotographic element of claim 54 wherein the condensed reaction product is prepared in a polar solvent medium.
- 77. The electrophotographic element of claim 76 wherein the polar solvent comprises water.
- 78. The electrophotographic element of claim 77 wherein the polar solvent further comprises a water-miscible organic solvent.
- 79. The electrophotographic element of claim 78 wherein said water-miscible organic solvent is selected from the group consisting of methanol, ethanol, isopropyl alcohol, methyl isobutyl ketone, and mixtures thereof.
- 80. The electrophotographic element of claim 54 further comprising a second charge transport layer disposed between said charge generating layer and said first charge transport layer.
- 81. The electrophotographic element of claim 80 wherein said second charge transport layer comprises the charge transport polymer.
- 82. The electrophotographic element of claim 80 wherein said second charge transport layer comprises the condensed reaction residue of the charge transport polymer.
- 83. The electrophotographic element of claim 54 further comprising a barrier layer overlying said electrically conducting layer.
- 84. The electrophotographic element of claim 75 wherein said first charge transport layer has a thickness of about 0.5 micron to about 10 microns.
- 85. The electrophotographic element of claim 75 wherein said first charge transport layer has a thickness of about 1 micron to about 3 microns.
- 86. The electrophotographic element of claim 54 wherein the first charge transport layer has a thickness of up to about 40 microns.
REFERENCE TO PRIOR APPLICATION
[0001] This application claims the benefit of U.S. Provisional Application No. 60/394,377, filed Jul. 8, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60394377 |
Jul 2002 |
US |