Claims
- 1. A composite for use in electroluminescent devices, said composite comprising:
a polymeric material having a first surface energy; and phosphorescent material dispersed within said polymeric material, said phosphorescent material having a second surface energy, said first and second surface energies each being between about 32 dynes/cm and 46 about dynes/cm and said polymeric material having a moisture vapor transmission rate of at least one gram/100 sq. inches for a 24 hour period at 100° F. for a one mil thick barrier.
- 2. The composite as claimed in claim 1, wherein said substrate has an overall moisture vapor transmission rate of greater than one gram/100 sq. inches for a 24 hour period at 100° F. for a one mil thick barrier.
- 3. The composite as claimed in claim 1, wherein said polymeric material includes an acylic.
- 4. The composite as claimed in claim 1, wherein said polymeric material includes amorphous polyesters.
- 5. The composite as claimed in claim 1, wherein said polymeric material includes a vinyl.
- 6. The composite as claimed in claim 1, wherein said polymeric material includes vinyl acetate copolymers.
- 7. The composite as claimed in claim 1, wherein said composite includes a protective layer.
- 8. The composite as claimed in claim 7, wherein said protective layer is clear.
- 9. The composite as claimed in claim 7, wherein said protective layer has a moisture vapor transmission rate of at least one gram/100 sq. inches for a 24 hour period at 100° F. for a one mil thick barrier.
- 10. A composite for use in electroluminescent devices, said composite comprising:
a polymeric material having a first surface energy; phosphorescent material in particulate form having a second surface energy, said phosphorescent material being dispersed within said polymeric material; and a protective layer having a third surface energy, said first, second and third surface energies each being between about 32 dynes/cm and 46 about dynes/cm and each of said polymeric material, said phosphorescent material, and said protective layer having a moisture vapor transmission rate of at least one gram/100 sq. inches for a 24 hour period at 100° F. for a one mil thick barrier.
- 11. The composite as claimed in claim 10, wherein said protective layer includes a coating of an electrically conductive material on one side thereof.
- 12. The composite as claimed in claim 10, wherein said composite includes a plurality of surface interfaces between layers of said substrate, and each of said surface interfaces is characterized as having a different between the moisture vapor transmission rates of each adjacent layer of said interface of less than about six grams/100 sq. inches for a 24 hour period at 100° F. for a one mil thick barrier.
- 13. An electroluminescent composite for use in electroluminescent devices, said composite comprising:
phosphorescent material; a polymeric coating material surrounding said phosphorescent material; first and second electrically conductive layers; and a protective layer, wherein each of said phosphorescent material, said polymeric coating material, said first and second electrically conductive layers, and said protective layer has a moisture vapor transmission rate of at least one gram/100 sq. inches for a 24 hour period at 100° F. for a one mil thick barrier such that the operation of said luminescent substrate is substantially insensitive to the presence of water vapor.
- 14. A method of using an electroluminescent device, said method comprising the steps of applying an alternating electric field through a composite of a polymeric material and a phosphorescent material, and permitting water vapor to pass through said electroluminescent device.
PRIORITY INFORMATION
[0001] The present application claims priority to U.S. Provisional Patent Applications Ser. Nos. 60/371,375 filed Apr. 10, 2002, and 60/404,420 filed Aug. 19, 2002.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60371375 |
Apr 2002 |
US |
|
60404420 |
Aug 2002 |
US |