Claims
- 1. A photosensitive composition comprising:
a) at least one fluorinated, non-urethane containing multifunctional acrylate prepared from at least one multifunctional alcohol, said alcohol being synthesized from a core molecule having at least two equivalents of hydroxy-reacting functional groups and a fluorinated molecule having at least two hydroxyl groups; and b) at least one photoinitiator.
- 2. The photosensitive composition of claim 1, wherein the non-urethane containing multifunctional acrylate is prepared using the following reaction scheme:
- 3. The photosensitive composition of claim 2 wherein n1 (i=1-3) independently ranges from3 to 6.
- 4. The photosensitive composition of claim 2 wherein there are at least 2.5 equivalents of OH groups from A for every equivalent of hydroxy-reacting group, W, from B.
- 5. The photosensitive composition of claim 2 wherein L is an ester link.
- 6. The photosensitive composition of claim 2, wherein the acrylate E has the formula of:
- 7. The photosensitive composition of claim 2 wherein Rf is a perfluorinated poly(methylene) moiety having at least 4 carbon atoms.
- 8. The photosensitive composition of claim 2 wherein Rf is a perfluorinated poly(alkylene oxide) moiety having at least 4 carbon atoms.
- 9. The photosensitive composition of claim 2 wherein B is selected from a group consisting of multifunctional carboxylic acid, acid chloride, ester and anhydride.
- 10. The photosensitive composition of claim 2 wherein B is selected from 1,3,5-benzenetricarbonyl trichloride, trimethyl-1,3,5-benzenetricarboxylate and 1,2,4-benzenetricarboxylic acid.
- 11. The photosensitive composition of claim 2 wherein B is selected from 1,2,3,4-butanetetracarboxylic acid and tetraethylrimethyl-1,1,2,2-ethanetetracarboxylate.
- 12. The photosensitive composition of claim 1 wherein the acrylate has a number average molecular weight of at least 500.
- 13. The photosensitive composition claim 1 wherein the photoinitiator composition is a mixture of at least two different photoinitiators.
- 14. A waveguide device having a light-transmitting structure formed on a substrate by patterning the photosensitive composition comprising:
a) at least one fluorinated, non-urethane containing multifunctional acrylate prepared from at least one multifunctional alcohol, said alcohol being synthesized from a core molecule having at least two equivalents of hydroxy-reacting functional groups and a fluorinated molecule having at least two hydroxyl groups; and b) at least one photoinitiator.
- 15. The waveguide device of claim 14 wherein the multifunctional acrylate is prepared using the following reaction scheme:
- 16. The waveguide device of claim 14, wherein the waveguide structure is patterned with an actinic radiation.
- 17. The waveguide device of claim 14, wherein the waveguide structure is patterned with reactive ion etching (RIE).
- 18. A thermo-optic device comprising a waveguide structure of claim 14 and at least one resistive heater.
- 19. The waveguide device of claim 14 wherein said waveguide structure containing at least one optical grating element.
- 20. The waveguide device of claim 19 wherein said device comprising at least one resistive heater.
- 21. A method to produce a waveguide device having a light-transmitting structure formed on a substrate by forming a coating of a photosensitive composition on a substrate and patterning the coating with an actinic radiation, said composition comprising:
a) at least one fluorinated, non-urethane containing multifunctional acrylate prepared from at least one multifunctional alcohol, said alcohol being synthesized from a core molecule having at least two equivalents of hydroxy-reacting functional groups and a fluorinated molecule having at least two hydroxyl groups; and b) at least one photoinitiator.
- 22. A method to produce a waveguide device having a light-transmitting structure formed on a substrate comprising:
a) coating a layer of a first composition of at least one fluorinated, non-urethane containing multifunctional acrylate prepared from at least one multifunctional alcohol, said alcohol being synthesized from a core molecule having at least two equivalents of hydroxy-reacting functional groups and a fluorinated molecule having at least two hydroxyl groups; and at least one photoinitiator on a substrate and exposing the layer to an actinic radiation to form a bottom cladding layer with a first refractive index, n1; b) coating a thin layer of a second composition of at least one fluorinated, non-urethane containing multifunctional acrylate prepared from at least one multifunctional alcohol, said alcohol being synthesized from a core molecule having at least two equivalents of hydroxy-reacting functional groups and a fluorinated molecule having at least two hydroxyl groups; and at least one photoinitiator on top of the bottom cladding layer and patternwise exposing the thin layer to an actinic radiation through a photomask with a desired feature to form a latent image in a core layer; c) removing the non-exposed portions in the core layer with an organic solvent to form a waveguide rib with a second refractive index, n2, wherein n2 is greater than n1; and d) coating a thin layer of a third composition of at least one fluorinated, non-urethane containing multifunctional acrylate prepared from at least one multifunctional alcohol, said alcohol being synthesized from a core molecule having at least two equivalents of hydroxy-reacting functional groups and a fluorinated molecule having at least two hydroxyl groups; at least one photoinitiator on top of the core layer and the bottom cladding layer and exposing the layer of the third composisiton to an actinic radiation to form a top cladding layer with a third refractive index, n3, wherein n3 is less than n2.
- 23. A waveguide device fabricated using the method of claim 22.
- 24. The waveguide device of claim 23, wherein n1=n3.
Parent Case Info
[0001] PRIORITY INFORMATION
[0002] This application claims priority from provisional application Ser. No. 60/265,765 filed Jan. 25, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60265765 |
Feb 2001 |
US |