Claims
- 1. A process for enhancing the durability of an article having a nano-structured surface to improve transmission or reduce reflection, the process comprising:
a) providing an article having a nano-structured optical surface, b) applying a solution formed of a solvent and a reactive lube, c) withdrawing the article from the solution source, d) removing excess reactive lube from the article such that a substantially uniform layer of reactive lube remains on the surface, e) wherein the layer of reactive lube has the opportunity to chemically react with the nano-structured surface.
- 2. A process for enhancing the durability of an article having a nano-structured surface to improve transmission or reduce reflection according to claim 1 wherein the uniform layer is a monolayer.
- 3. A process for enhancing the durability of an article having a nano-structured surface to improve transmission or reduce reflection according to claim 1 wherein the reactive lube is a fluoroaliphatic polymer.
- 4. A process for enhancing the durability of an article having a nano-structured surface to improve transmission or reduce reflection according to claim 1 wherein the reactive lube is a fluorosilane polymer.
- 5. A process for enhancing the durability of an article having a nano-structured surface to improve transmission or reduce reflection according to claim 1 wherein the solvent is a fluorosolvent.
- 6. A process for enhancing the durability of an article having a nano-structured surface to improve transmission or reduce reflection, the process comprising:
a) providing an article having a nano-structured optical surface, b) applying a solution formed of a solvent with a surface cross-linking reagent, c) withdrawing the article from the solution source, d) removing excess surface cross-linking reagent from the article, e) wherein the surface-active cross-linking agent has the opportunity to chemically react with the nano-structured surface.
- 7. A process for enhancing the durability of an article having a nano-structured surface to improve transmission or reduce reflection according to claim 6 wherein the cross-linking agent is a polyvalent ion.
- 8. A process for enhancing the durability of an article having a nano-structured surface to improve transmission or reduce reflection according to claim 7 wherein the polyvalent ion is selected from the group consisting of Ca+2, Mg+2, Fe+3 and Al+3.
- 9. A process for enhancing the durability of an article having a nano-structured surface to improve transmission or reduce reflection according to claim 3, the process further comprising:
a) applying a solution formed of a solvent and a reactive lube, withdrawing the article from the solution source, b) removing excess reactive lube from the article such that a substantially uniform layer of reactive lube remains on the surface, c) wherein the layer of reactive lube has the opportunity to chemically react with the nano-structured surface.
- 10. A transparent optical element consisting essentially of:
a) a transparent body having a front surface, the front surface of the transparent body having a nano-structure to reduce reflection there from and increase overall transmission through the optical element, b) a substantially uniform layer of a reactive lube is disposed on the front surface of the transparent body.
- 11. A transparent optical element according to claim 10 wherein the reactive lube is a monolayer.
- 12. A transparent optical element according to claim 10 wherein the average optical reflection from 450-750 nm is less than about 4%.
- 13. A transparent optical element according to claim 10 wherein the average optical reflection from 450-750 nm is less than about <0.2%.
- 14. A transparent optical element according to claim 10 wherein the average optical reflection from 450-750 nm is less than about <0.5%.
- 15. A transparent optical element according to claim 10 wherein the average optical reflection from 450-750 nm is less than about <2.0%.
- 16. A transparent optical element according to claim 10 wherein the average optical reflection from 450-750 nm is less than about <0.5%.
- 17. A transparent optical element according to claim 15 wherein the transparent body is a lens.
- 18. transparent optical element according to claim 15 wherein the transparent body is a plastic resin.
- 19. A transparent optical element according to claim 16 wherein the transparent body is a plastic ophthalmic lens.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to the provisional patent application having serial # 60/437,208 and filed on Dec. 30, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60437208 |
Dec 2002 |
US |