Claims
- 1. A device comprising a thiophene-containing chromophore of the structure
- 2. The device of claim 1 wherein D is selected from the group consisting of
- 3. The device of claim 2 wherein, independently at each occurrence,
R contains 1-12 carbons; R1 is hydrogen or contains 1-12 carbons; Y is O or S; m is 2, 3 or 4; p is 0, 1 or 2; and q is 0 or 1.
- 4. The device of claim 2 wherein D is selected from the group consisting of
- 5. The device of claim 4 wherein, independently at each occurrence,
R contains 1-12 carbons; R1 is hydrogen or contains 1-12 carbons; and Y is O or S.
- 6. The device of claim 1 wherein π1 and π2 are both present in the chromophore.
- 7. The device of claim 1 wherein one or both of π1 and π2 is, independently at each occurrence, of the structure
- 8. The device of claim 1 wherein, independently, π1 and π2 are either absent or selected from the group consisting of
- 9 The device of claim 1 wherein π1 and π2 are each —CH═CH—.
- 10. The device of claim 1 wherein A is selected from the group consisting of
- 11. The device of claim 10 wherein, independently at each occurrence,
R contains 1-12 carbons; R1 is hydrogen or contains 1-12 carbons; Y is O or S; and q is 0 or 1.
- 12. The device of claim 1 wherein A is
- 13. The device of claim 1 wherein R is alkyl.
- 14. The device of claim 1 wherein R is aryl.
- 15. The device of claim 1 wherein R is heteroalkyl.
- 16. The device of claim 1 wherein R is heteroaryl.
- 17. The device of claim 1 wherein R is hydrophobic.
- 18. The device of claim 1 wherein R is hydrophilic.
- 19. The device of claim 1 wherein R is saturated.
- 20. The device of claim 1 wherein R is unsaturated.
- 21. The device of claim 1 wherein R contains 1-6 carbons.
- 22. The device of claim 1 wherein R contains 7-12 carbons.
- 23. The device of claim 1 wherein R contains 13-22 carbons.
- 24. The device of claim 1 wherein n is 1.
- 25. The device of claim 1 wherein n is 2 or 3.
- 26. The device of claim 1 wherein n is 4.
- 27. The device of claim 1 wherein X is O.
- 28. The device of claim 1 wherein X is S.
- 29. The device of claim 1 wherein π1 and π2 are
- 30. A device comprising a thiophene-containing chromophore of the structure
- 31. The device of claim 30 wherein, independently at each occurrence,
D is selected from the group consisting of 99and π is selected from the group consisting of 100
- 32. A device comprising a thiophene-containing chromophore of the structure
- 33. The device of claim 32 wherein, independently at each occurrence,
R is —(CH2)wOH, —(CH2)wOR1, —(CH2)wSH, —(CH2)wCO2Et, —(CH2)wCO2H, —(CH2)wNH2, —(CH2)wCN, —(CH2)whalogen, or —COC6H4OCF═CF2 where w is an integer selected from 1-12; and R1 is hydrogen, R, perfluoroalkyl, SiR3, Si(CH3)2t-Bu, or Si(i-Pr)3.
- 34. A device comprising a thiophene-containing chromophore of the structure
- 35. The device of claim 34 wherein, independently at each occurrence,
R is —(CH2)wOH, —(CH2)wOR1, —(CH2)wSH, —(CH2)wCO2Et, —(CH2)wCO2H, —(CH2)wNH2, —(CH2)wCN, —(CH2)whalogen, or —COC6H4OCF═CF2 where w is an integer selected from 1-12; and R1 is hydrogen, R, perfluoroalkyl, SiR3, Si(CH3)2t-Bu, or Si(i-Pr)3.
- 36. A device comprising a thiophene-containing chromophore of the structure
- 37. The device of claim 36 having the structure
- 38. The device of claim 36 having the structure
- 39. A device comprising a composition of matter of the formula
- 40. A device comprising a composition of matter of the formula
- 41. The device of claim 39, wherein L comprises a thermally crosslinkable trifluorovinylether group; at least one of D, π, or A of the chromophore is covalently bound to a polymer; and D, π, or A is comprises L, halogen, alkyl, aryl, heteroalkyl or heteroaryl.
- 42. The device of claim 40, wherein L includes a thermally crosslinkable trifluorovinylether group; at least one of D, π, or A of the chromophore is covalently bound to a polymer; and D, π, or A is further substituted with L, halogen, alkyl, aryl, heteroalkyl or heteroaryl.
- 43. A device comprising a composition of matter, the composition of matter comprising a chromophore non-covalently incorporated into a crosslinkable polymer matrix, wherein the chromophore has the structure
- 44. A device comprising a composition of matter, the composition of matter comprising a chromophore non-covalently incorporated into a crosslinkable polymer matrix, wherein the chromophore has the structure
- 45. A process comprising sequentially 1) incorporating a chromophore into a polymer matrix; 2) maintaining the polymer matrix at a selected temperature to allow effective chromophore mobility; and 3) applying an electric field sufficient to induce dipole alignment of the chromophore in the polymer matrix, wherein the chromophore has the structure
- 46. A process comprising sequentially 1) incorporating a chromophore into a polymer matrix; 2) maintaining the polymer matrix at a selected temperature to allow effective chromophore mobility; and 3) applying an electric field sufficient to induce dipole alignment of the chromophore in the polymer matrix, wherein the chromophore has the structure
- 47. A process comprising 1) providing a composition of matter; 2) maintaining the composition at a selected temperature to allow effective chromophore mobility; and 3) applying an electric field sufficient to induce dipole alignment of the chromophores, wherein the composition of matter comprises a material of the formula
- 48. A process comprising 1) providing a composition of matter; 2) maintaining the composition at a selected temperature to allow effective chromophore mobility; and 3) applying an electric field sufficient to induce dipole alignment of the chromophores, wherein the composition of matter comprises a material of the formula
- 49. The process of claim 47 or 48, further comprising the step of heating the composition to a selected temperature to affect crosslinking.
- 50. A composition of matter made by the process of claim 45.
- 51. A composition of matter made by the process of claim 46.
- 52. A composition of matter made by the process of claim 47.
- 53. A composition of matter made by the process of claim 48.
- 54. The device of claim 1, which is an electro-optic device.
- 55. The device of claim 36, which is an electro-optic device.
- 56. The device of claim 39, which is an electro-optic device.
- 57. The device of claim 40, which is an electro-optic device.
- 58. The device of claim 1, which is a waveguide.
- 59. The device of claim 36, which is a waveguide.
- 60. The device of claim 39, which is a waveguide.
- 61. The device of claim 40, which is a waveguide.
- 62. The device of claim 1, which is an optical switch.
- 63. The device of claim 36, which is an optical switch.
- 64. The device of claim 39, which is an optical switch.
- 65. The device of claim 40, which is an optical switch.
- 66. The device of claim 1 which is an optical modulator.
- 67. The device of claim 36, which is an optical modulator.
- 68. The device of claim 39, which is an optical modulator.
- 69. The device of claim 40, which is an optical modulator.
- 70. The device of claim 1, which is an optical coupler.
- 71. The device of claim 36, which is an optical coupler.
- 72. The device of claim 39, which is an optical coupler.
- 73. The device of claim 40, which is an optical coupler.
- 74. The device of claim 1, which is an optical router.
- 75. The device of claim 36, which is an optical router.
- 76. The device of claim 39, which is an optical router.
- 77. The device of claim 40, which is an optical router.
- 78. A communications system comprising the device of claim 1.
- 79. A communications system comprising the device of claim 36.
- 80. A communications system comprising the device of claim 39.
- 81. A communications system comprising the device of claim 40.
- 82. A method of data transmission comprising transmitting light through a device of claim 1.
- 83. A method of data transmission comprising transmitting light through a device of claim 36.
- 84. A method of data transmission comprising transmitting light through a device of claim 39.
- 85. A method of data transmission comprising transmitting light through a device of claim 40.
- 86. A method of telecommunication comprising transmitting light through a device of claim 1.
- 87. A method of telecommunication comprising transmitting light through a device of claim 36.
- 88. A method of telecommunication comprising transmitting light through a device of claim 39.
- 89. A method of telecommunication comprising transmitting light through a device of claim 40.
- 90. A method of transmitting light comprising directing light through or via a device of claim 1.
- 91. A method of transmitting light comprising directing light through or via a device of claim 36.
- 92. A method of transmitting light comprising directing light through or via a device of claim 39.
- 93. A method of transmitting light comprising directing light through or via a device of claim 40.
- 94. A method of routing light through an optical system comprising transmitting light through or via a device of claim 1.
- 95. A method of routing light through an optical system comprising transmitting light through or via a device of claim 36.
- 96. A method of routing light through an optical system comprising transmitting light through or via a device of claim 39.
- 97. A method of routing light through an optical system comprising transmitting light through or via a device of claim 40.
- 98. An interferometric optical modulator or switch, comprising: 1) an input waveguide; 2) an output waveguide; 3) a first leg having a first end and a second end, the first leg being coupled to the input waveguide at the first end and to the output waveguide at the second end; and 4) a second leg having a first end and a second end, the second leg being coupled to the input waveguide at the first end and to the output waveguide at the second end, wherein at least one of the first and second legs includes a composition of matter comprising a chromophore of the structure
- 99. An interferometric optical modulator or switch, comprising: 1) an input waveguide; 2) an output waveguide; 3) a first leg having a first end and a second end, the first leg being coupled to the input waveguide at the first end and to the output waveguide at the second end; and 4) a second leg having a first end and a second end, the second leg being coupled to the input waveguide at the first end and to the output waveguide at the second end, wherein at least one of the first and second legs includes a composition of matter comprising a chromophore of the structure
- 100. An interferometric optical modulator or switch, comprising: 1) an input waveguide; 2) an output waveguide; 3) a first leg having a first end and a second end, the first leg being coupled to the input waveguide at the first end and to the output waveguide at the second end; and 4) a second leg having a first end and a second end, the second leg being coupled to the input waveguide at the first end and to the output waveguide at the second end, wherein at least one of the first and second legs includes a composition of matter of the formula
- 101. An interferometric optical modulator or switch, comprising: 1) an input waveguide; 2) an output waveguide; 3) a first leg having a first end and a second end, the first leg being coupled to the input waveguide at the first end and to the output waveguide at the second end; and 4) a second leg having a first end and a second end, the second leg being coupled to the input waveguide at the first end and to the output waveguide at the second end, wherein at least one of the first and second legs includes a composition of matter of the formula
- 102. The modulator of claim 98, wherein the modulator or switch further comprises an electrode positioned to produce an electric field across the first or second waveguide.
- 103. The modulator of claim 99, wherein the modulator or switch further comprises an electrode positioned to produce an electric field across the first or second waveguide.
- 104. The modulator of claim 100, wherein the modulator or switch further comprises an electrode positioned to produce an electric field across the first or second waveguide.
- 105. The modulator of claim 101, wherein the modulator or switch further comprises an electrode positioned to produce an electric field across the first or second waveguide.
- 106. An optical router comprising a plurality of switches, wherein each switch comprises: 1) an input; 2) an output; 3) a first waveguide extending between the input and the output; and 4) a second waveguide aligned to the first waveguide and positioned for evanescent coupling to the first waveguide; wherein at least one of the first and second waveguides comprises a thiophene-containing chromophore of the structure
- 107. An optical router comprising a plurality of switches, wherein each switch comprises: 1) an input; 2) an output; 3) a first waveguide extending between the input and the output; and 4) a second waveguide aligned to the first waveguide and positioned for evanescent coupling to the first waveguide; wherein at least one of the first and second waveguides comprises a thiophene-containing chromophore of the structure
- 108. An optical router comprising a plurality of switches, wherein each switch comprises: 1) an input; 2) an output; 3) a first waveguide extending between the input and the output; and 4) a second waveguide aligned to the first waveguide and positioned for evanescent coupling to the first waveguide; wherein at least one of the first and second waveguides comprises a composition of matter of the formula
- 109. An optical router comprising a plurality of switches, wherein each switch comprises: 1) an input; 2) an output; 3) a first waveguide extending between the input and the output; and 4) a second waveguide aligned to the first waveguide and positioned for evanescent coupling to the first waveguide; wherein at least one of the first and second waveguides comprises a composition of matter of the formula
- 110. The optical router of claim 106, wherein the plurality of switches is arranged in an array of rows and columns.
- 111. The optical router of claim 107, wherein the plurality of switches is arranged in an array of rows and columns.
- 112. The optical router of claim 108, wherein the plurality of switches is arranged in an array of rows and columns.
- 113. The optical router of claim 109, wherein the plurality of switches is arranged in an array of rows and columns.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a divisional application of U.S. patent application Ser. No. 09/932,831 filed Aug. 17, 2001, now pending, which claims the benefit of U.S. Provisional Patent Application No. 60/226,267, filed Aug. 17, 2000.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60226267 |
Aug 2000 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09932831 |
Aug 2001 |
US |
Child |
10387715 |
Mar 2003 |
US |