Claims
- 1. A polymer comprising a backbone and a side-chain, for forming a nonlinear optic material, comprising the structure:
- 2. The polymer of claim 1, wherein said polymer is substantially deuterated.
- 3. The polymer of claim 1, wherein n is an integer from 1 to 100.
- 4. The polymer of claim 1, wherein said Y and said Z form the side-chain of said polymer.
- 5. The polymer of claim 1, wherein said aromatic group is selected from the group consisting of a substituted benzene, a substituted aromatic group, and a heterosubstituted aromatic.
- 6. The polymer of claim 1, wherein said aromatic group comprises substituted benzene.
- 7. The polymer of claim 1, wherein said aromatic group is selected from the group consisting of
- 8. The polymer of claim 1, further comprising a spacer moiety between said X and said Y groups.
- 9. The polymer of claim 1, wherein said electron donating group is
- 10. The polymer of claim 9, wherein R7 is saturated alkyl.
- 11. The polymer of claim 9, wherein R7 is C3H6.
- 12. The polymer of claim 9, wherein said electron withdrawing group is selected from the group consisting of
- 13. The polymer of claim 1, wherein said electron donating group is
- 14. The polymer of claim 13, wherein said electron withdrawing group is selected from the group consisting of
- 15. The polymer of claim 1, wherein A is selected from the group consisting of
- 16. The polymer of claim 1, wherein A comprises a crosslinkable linking monomer having the structure
- 17. The polymer of claim 16, wherein said crosslinking substituent is selected from the group consisting of
- 18. The polymer of claim 17, wherein n is two or more and a first crosslinking substituent and a second crosslinking substituent are crosslinked.
- 19. The polymer of claim 1, wherein A comprises a crosslinkable linking monomer having the structure
- 20. The polymer of claim 19, wherein said crosslinking substituent is selected from the group consisting of
- 21. The polymer of claim 20, wherein n is two or more and a first crosslinking substituent and a second crosslinking substituent are crosslinked.
- 22. Polymerizing one or more monomers to form the polymer of claim 1.
- 23. Polymerizing one or more monomers to form the polymer of claim 9.
- 24. Polymerizing one or more monomers to form the polymer of claim 12.
- 25. Polymerizing one or more monomers to form the polymer of claim 13.
- 26. Polymerizing one or more monomers to form the polymer of claim 14.
- 27. Polymerizing one or more monomers to form the polymer of claim 15.
- 28. Polymerizing one or more monomers to form the polymer of claim 16.
- 29. Polymerizing one or more monomers to form the polymer of claim 18.
- 30. Polymerizing one or more monomers to form the polymer of claim 19.
- 31. Polymerizing one or more monomers to form the polymer of claim 21.
- 32. An electro-optical device comprising the polymer of claim 1, 9, 12, 13, 14, 15, 16, 18, 19, or 21, wherein said device has an electro-optically variable refractive index.
- 33. The electro-optical device of claim 32, wherein said device is selected from the group consisting of a phase modulator, a light intensity modulator, a directional coupler, an optical switch, an optical waveguide, and bulk devices having variable indices of refraction.
- 34. A compound, for forming a nonlinear optic material, comprising the structure:
- 35. The compound of claim 34, wherein said compound is substantially deuterated.
- 36. The compound of claim 34, wherein said electron donating group is
- 37. The compound of claim 36, wherein R7 is saturated alkyl.
- 38. The compound of claim 36, wherein R7 is C3H6.
- 39. The compound of claim 36, wherein said electron withdrawing group is selected from the group consisting of
- 40. The compound of claim 34, wherein said electron donating group is
- 41. The compound of claim 40, wherein said electron withdrawing group is selected from the group consisting of
- 42. A polymer comprising the compound of claim 34, wherein at least one said labile group is removed from said compound.
- 43. A polymer comprising the compound of claim 39, wherein at least one said labile group is removed from said compound.
- 44. A polymer comprising the compound of claim 40, wherein at least one said labile group is removed from said compound.
- 45. A polymer comprising the compound of claim 41, wherein at least one said labile group is removed from said compound.
- 46. The polymer of claim 42, further comprising a linking monomer.
- 47. The polymer of claim 46, wherein said linking monomer is selected from the group consisting of
- 48. The polymer of claim 42, further comprising at least two linking monomers, wherein at least one of said two linking monomers is a crosslinkable linking monomer comprising the structure
- 49. The polymer of claim 48, wherein said crosslinking substituent is selected from the group consisting of
- 50. The polymer of claim 49, wherein a first crosslinking substituent and a second crosslinking substituent are crosslinked.
- 51. The polymer of claim 43, further comprising a linking monomer.
- 52. The polymer of claim 51, wherein said linking monomer is selected from the group consisting of
- 53. The polymer of claim 43, further comprising at least two linking monomers, wherein at least one of said two linking monomers is a crosslinkable linking monomer comprising the structure
- 54. The polymer of claim 53, wherein said crosslinking substituent is selected from the group consisting of
- 55. The polymer of claim 54, wherein a first crosslinking substituent and a second crosslinking substituent are crosslinked.
- 56. The polymer of claim 44, further comprising a linking monomer.
- 57. The polymer of claim 56, wherein said linking monomer is selected from the group consisting of
- 58. The polymer of claim 44, further comprising at least two linking monomers, wherein at least one of said two linking monomers is a crosslinkable linking monomer comprising the structure
- 59. The polymer of claim 58, wherein said crosslinking substituent is selected from the group consisting of
- 60. The polymer of claim 59, wherein a first crosslinking substituent and a second crosslinking substituent are crosslinked.
- 61. The polymer of claim 45, further comprising a linking monomer.
- 62. The polymer of claim 61, wherein said linking monomer is selected from the group consisting of
wherein 53R1 comprises a labile group; R2 is selected from the group consisting of single bond, carbonyl containing moiety, saturated alkyl, unsaturated alkyl, aromatic, substituted aromatic, heterosubstituted saturated alkyl, heterosubstituted unsaturated alkyl, heterosubstituted aromatic, 54 or mixtures thereof; Q is a halogen; and at least one said labile group is removed from said linking monomer.
- 63. The polymer of claim 45, further comprising at least two linking monomers, wherein at least one of said two linking monomers is a crosslinkable linking monomer comprising the structure
- 64. The polymer of claim 63, wherein said crosslinking substituent is selected from the group consisting of
- 65. The polymer of claim 64, wherein a first crosslinking substituent and a second crosslinking substituent are crosslinked.
- 66. Polymerizing a composition comprising the compound of claim 34.
- 67. Polymerizing a composition comprising the compound of claim 39.
- 68. Polymerizing a composition comprising the compound of claim 40.
- 69. Polymerizing a composition comprising the compound of claim 41.
- 70. An electro-optical device comprising the polymer of claim 42, 43, 44, 45, 46, 47, 48, 50, 51, 52, 53, 55, 56, 57, 58, 60, 61, 62, 63, or 65, wherein said device has an electro-optically variable refractive index.
- 71. The electro-optical device of claim 70, wherein said device is selected from the group consisting of a phase modulator, a light intensity modulator, a directional coupler, an optical switch, an optical waveguide, and bulk devices having variable indices of refraction.
- 72. A compound, for forming a nonlinear optic material, comprising the structure:
- 73. The compound of claim 72, wherein said compound is substantially deuterated.
- 74. The compound of claim 72, wherein said electron donating group is
- 75. The compound of claim 74, wherein R7 is saturated alkyl.
- 76. The compound of claim 74, wherein R7 is C3H6.
- 77. The compound of claim 74, wherein said electron withdrawing group is selected from the group consisting of
- 78. The compound of claim 72, wherein said electron donating group is
- 79. The compound of claim 78, wherein said electron withdrawing group is selected from the group consisting of
- 80. A polymer comprising the compound of claim 74, wherein at least one said labile group is removed from said compound.
- 81. A polymer comprising the compound of claim 77, wherein at least one said labile group is removed from said compound.
- 82. A polymer comprising the compound of claim 78, wherein at least one said labile group is removed from said compound.
- 83. A polymer comprising the compound of claim 79, wherein at least one said labile group is removed from said compound.
- 84. The polymer of claim 80, further comprising a linking monomer.
- 85. The polymer of claim 84, wherein said linking monomer is selected from the group consisting of
- 86. The polymer of claim 80, further comprising at least two linking monomers, wherein at least one of said two linking monomers is a crosslinkable linking monomer comprising the structure
- 87. The polymer of claim 86, wherein said crosslinking substituent is selected from the group consisting of
- 88. The polymer of claim 87, wherein a first crosslinking substituent and a second crosslinking substituent are crosslinked.
- 89. The polymer of claim 81, further comprising a linking monomer.
- 90. The polymer of claim 89, wherein said linking monomer is selected from the group consisting of
- 91. The polymer of claim 81, further comprising at least two linking monomers, wherein at least one of said two linking monomers is a crosslinkable linking monomer comprising the structure
- 92. The polymer of claim 91, wherein said crosslinking substituent is selected from the group consisting of
- 93. The polymer of claim 92, wherein a first crosslinking substituent and a second crosslinking substituent are crosslinked.
- 94. The polymer of claim 82, further comprising a linking monomer.
- 95. The polymer of claim 94, wherein said linking monomer is selected from the group consisting of
- 96. The polymer of claim 82, further comprising at least two linking monomers, wherein at least one of said two linking monomers is a crosslinkable linking monomer comprising the structure
- 97. The polymer of claim 96, wherein said crosslinking substituent is selected from the group consisting of
- 98. The polymer of claim 97, wherein a first crosslinking substituent and a second crosslinking substituent are crosslinked.
- 99. The polymer of claim 83, further comprising a linking monomer.
- 100. The polymer of claim 99, wherein said linking monomer is selected from the group consisting of
- 101. The polymer of claim 83, further comprising at least two linking monomers, wherein at least one of said two linking monomers is a crosslinkable linking monomer comprising the structure
- 102. The polymer of claim 101, wherein said crosslinking substituent is selected from the group consisting of
- 103. The polymer of claim 102, wherein a first crosslinking substituent and a second crosslinking substituent are crosslinked.
- 104. Polymerizing a composition comprising the compound of claim 72.
- 105. Polymerizing a composition comprising the compound of claim 77.
- 106. Polymerizing a composition comprising the compound of claim 78.
- 107. Polymerizing a composition comprising the compound of claim 79.
- 108. An electro-optical device comprising the polymer of claim 80, 81, 82, 83, 84, 85, 86, 88, 89, 90, 91, 93, 94, 95, 96, 98, 99, 100, 101, or 103, wherein said device has an electro-optically variable refractive index.
- 109. The electro-optical device of claim 108, wherein said device is selected from the group consisting of a phase modulator, a light intensity modulator, a directional coupler, an optical switch, an optical waveguide, and bulk devices having variable indices.
REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application No. 60/305, 374, filed Jul. 13, 2001, entitled “Novel Nonlinear Optical Polyesterimides Containing Chromophores with Large Hyperpolarizabilities,” the contents of which are incorporated herein by reference in its entirety.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60305374 |
Jul 2001 |
US |