Claims
- 1. A coated glass article comprising:
a) a glass-substrate; b) a barrier layer deposited on said glass substrate c) a base coating of a substantially undoped metal oxide applied to said barrier layer; and d) an electrically conductive coating of a doped metal oxide applied directly to said substantially undoped metal oxide coating wherein the source metal from which the oxides of the substantially undoped and doped coatings are derived is the same.
- 2. The coated glass article of claim 1, wherein said article is heat strengthened.
- 3. The coated glass article of claim 1, wherein said barrier layer is silica.
- 4. The coated glass article of claim 1, wherein
a) a base coating of a substantially undoped metal oxide is applied to said barrier layer, said coating having a thickness from 200 Å-3,000 Å; and b) an electrically conductive coating of a doped metal oxide is applied directly to said substantially undoped metal oxide layer, said coating having a thickness from 200 Å-5,000 Å, wherein the source metal from which the oxides of the substantially undoped, and doped coatings are derived, is the same.
- 5. The coated glass article of claim 4, wherein said base coating of substantially undoped metal oxide has a thickness of 300 Å to 2,500 Å and said doped metal oxide layer has a thickness of 200 Å to 3,000 Å.
- 6. The coated glass article of claim 1, wherein the source metal from which the oxide of the substantially undoped and doped coatings, is derived is chosen from the group consisting of tin, indium, zinc, cadmium, tungsten, titanium and vanadium.
- 7. The coated glass article of claim 1, wherein said barrier layer comprises a color suppression interlayer between said glass substrate and said base coating.
- 8. The coated glass article of claim 2 wherein the sheet resistance of said coated glass article is at least 232 ohms/square.
- 9. A coated glass article comprising:
a) a glass substrate; b) a color suppression interlayer deposited over said glass substrate said color suppression layer further comprising a thin, undoped coating of metal oxide applied to said glass substrate, and a coating of silica applied directly over said thin, undoped metal oxide coating; and c) a base coating of a substantially undoped metal oxide applied over said thin, undoped metal oxide coating of said color suppression interlayer; and d) an electrically conductive coating of a doped metal oxide, applied directly to said substantially undoped metal oxide layer, wherein, the source metal from which the oxides of the substantially undoped and doped coatings are derived is the same.
- 10. The coated glass article of claim 9 where the thin, undoped metal oxide coating of the color suppression interlayer has a thickness of 150 Å to 350 Å, and the silica coating of said color suppression interlayer has a thickness of 150 Å to 350 Å.
- 11. The coated glass article of claim 9 wherein the sheet resistance of the coated glass article is at least 232 ohms/square.
- 12. A coated glass article comprising:
a) a glass substrate; b) a barrier layer deposited on said glass substrate c) a base coating of substantially undoped tin oxide applied to said barrier layer; and d) an electrically conductive coating of fluorine-doped tin oxide applied directly to said substantially undoped tin oxide coating, wherein the organotin compound from which the undoped and doped coatings are derived is chosen from the group consisting of alkyl metal chlorides, metal B-diketonates and metal alkoxides.
RELATED APPLICATION
[0001] This application is a divisional application of pending application Ser. No. 09/397,360 filed Sep. 16, 1999, which claimed the benefit under 35 U.S.C. §119(e) of a provisional application filed Sep. 17, 1998 under 35 U.S.C. §111(b), which was granted Serial No. 60/100,763, both of which applications are hereby incorporated by reference in their entirety.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60100763 |
Sep 1998 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09397360 |
Sep 1999 |
US |
Child |
10167160 |
Jun 2002 |
US |