Claims
- 1. An optical article comprising a photoactive material and a polymer matrix formed by a polymerizing reaction of a material comprising component 1 and component 2, said component 1 comprises a NCO-terminated pre-polymer and said component 2 comprises a polyol;
wherein said material has an exotherm peak occurring within 12 minutes after mixing said component 1 and said component 2.
- 2. The optical article of claim 1, wherein the polymerization reaction is selected from a group consisting of a urethane formation reaction, an urea formation reaction and combinations thereof.
- 3. The optical article of claim 1, wherein said component 1 comprises a substance selected from the group consisting of aromatic isocyanate, aliphatic isocyanate and combinations thereof.
- 4. The optical article of claim 1, wherein said component 1 comprises a substance selected from the group consisting of aromatic diisocyanate, hexamethylene diisocyanate, a derivative of hexamethylene diisocyanate and combinations thereof.
- 5. The optical article of claim 1, wherein said polyol comprises a polyol of polypropylene oxide.
- 6. The optical article of claim 5, wherein said component 2 further comprises a polytetramethylene ether diol.
- 7. The optical article of claim 1, wherein the photoactive material is a photoactive monomer.
- 8. The optical article of claim 7, wherein the photoactive monomer is an acrylate monomer.
- 9. The optical article of claim 1, wherein the optical article is a holographic recording medium having a thickness greater than 200 μm and Δn of 3×10−3 or higher.
- 10. The optical article of claim 1, wherein the optical article is an optical waveguide.
- 11. The optical article of claim 1, wherein the optical article has a writing induced shrinkage of less than 0.25 percent.
- 12. The optical article of claim 1, wherein the optical article is a holographic recording medium.
- 13. The optical article of claim 1, wherein said material has an exotherm peak occurring within 5 minutes after mixing said component 1 and said component 2 and said material has a soft gel within 15 minutes after mixing said component 1 and said component 2.
- 14. The optical article of claim 1, wherein said material has an exotherm peak occurring within 3 minutes after mixing said component 1 and said component 2 and said material has a soft gel within 5 minutes after mixing said component 1 and said component 2.
- 15. An optical article comprising a photoactive material and a polymer matrix formed by a polymerizing reaction of a material comprising component 1 and component 2, said component 1 comprises biscyclohexylmethane diisocyanate, a NCO-terminated prepolymer formed by a reaction of biscyclohexylmethane diisocyanate and polytetramethylene glycol, butyrated hydroxytoluene and a derivative of hexamethylene diisocyanate, and said component 2 comprises a polyol of polypropylene oxide and a polyol of polytetramethylene ether;
wherein said material has an exotherm peak occurring within 12 minutes after mixing said component 1 and said component 2.
- 16. An optical article comprising a photoactive material and a polymer matrix formed by a polymerizing reaction of a material comprising component 1 and component 2, said component 1 comprises a NCO-terminated pre-polymer selected from the group consisting of diphenylmethane diisocyanate, toluene diisocyanate, hexamethylene diisocyanate and a derivative of hexamethylene diisocyanate, and said component 2 comprises a polyol of polypropylene oxide;
wherein said material has an exotherm peak occurring within 12 minutes after mixing said component 1 and said component 2.
- 17. A method of manufacturing an optical article, comprising:
mixing component 1 and component 2 to form a material comprising a photoactive material and reacting ingredients of said material, wherein said component 1 comprises a NCO-terminated pre-polymer and said component 2 comprises a polyol, and said material has an exotherm peak occurring within 12 minutes after mixing said component 1 and said component 2.
- 18. The method of claim 17, wherein said reacting comprises a polymerization reaction selected from a group consisting of a urethane formation reaction, an urea formation reaction, cationic epoxy polymerization, cationic vinyl ether polymerization, cationic alkenyl ether polymerization, cationic allyl ether polymerization, cationic ketene acetal polymerization, epoxy-amine step polymerization, epoxy-mercaptan step polymerization, unsaturated ester-amine step polymerization, unsaturated ester-mercaptan step polymerization, a hydrosilylation reaction and combinations thereof.
- 19. The method of claim 17, wherein said component 1 comprises a substance selected from the group consisting of aromatic isocyanate, aliphatic isocyanate and combinations thereof.
- 20. The method of claim 17, wherein said component 1 comprises a substance selected from the group consisting of aromatic diisocyanate, hexamethylene diisocyanate, a derivative of hexamethylene diisocyanate and combinations thereof.
- 21. The method of claim 17, wherein said polyol comprises a polyol of polypropylene oxide.
- 22. The method of claim 21, wherein said component 2 further comprises a polytetramethylene ether diol.
- 23. The method of claim 17, wherein the photoactive material is a photoactive monomer.
- 24. The method of claim 23, wherein the photoactive monomer is an acrylate monomer.
- 25. The method of claim 17, wherein said material has an exotherm peak occurring within 5 minutes after mixing said component 1 and said component 2 and said material has a soft gel within 15 minutes after mixing said component 1 and said component 2.
- 26. The method of claim 17, wherein said material has an exotherm peak occurring within 3 minutes after mixing said component 1 and said component 2 and said material has a soft gel within 5 minutes after mixing said component 1 and said component 2.
- 27. A method of manufacturing an optical article, comprising:
mixing a photoactive material and a material comprising component 1 and component 2, said component 1 comprises biscyclohexylmethane diisocyanate, a NCO-terminated prepolymer formed by a reaction of biscyclohexylmethane diisocyanate and polytetramethylene glycol, butyrated hydroxytoluene and a derivative of hexamethylene diisocyanate, and said component 2 comprises a polyol of polypropylene oxide and a polyol of polytetramethylene ether, and reacting ingredients of said material; wherein said material has an exotherm peak occurring within 12 minutes after mixing said component 1 and said component 2 and said material has a soft gel within 30 minutes after mixing said component 1 and said component 2.
- 28. A method of manufacturing an optical article, comprising:
mixing a photoactive material and a material comprising component 1 and component 2, said component 1 comprises a NCO-terminated pre-polymer selected from the group consisting of diphenylmethane diisocyanate, toluene diisocyanate, hexamethylene diisocyanate and a derivative of hexamethylene diisocyanate, and said component 2 comprises a polyol of polypropylene oxide, and reacting ingredients of said material; wherein said material has an exotherm peak occurring within 12 minutes after mixing said component 1 and said component 2 and said material has a soft gel within 30 minutes after mixing said component 1 and said component 2.
RELATED APPLICATION
[0001] This application claims priority from U.S. Provisional Application No. 60/310,225 filed Aug. 7, 2001, which is entitled the same as this application.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60310225 |
Aug 2001 |
US |