Claims
- 1. A coated substrate which is a glass, ceramic or vitro-ceramic substrate provided on at least a portion of one of its faces with a coating having photocatalytic properties, and comprising titanium oxide at least partly crystallized in the anatase form, and obtained by thermal decomposition of titanium precursors selected from the group consisting of organo-metallic precursors and metallic halide precursors, wherein said coating has a thickness between 5 and 50 nm, wherein the crystallized titanium oxide is in the form of crystallites with an average size of between 0.5 and 60 nm.
- 2. A coated substrate which is a glass, ceramic or vitro-ceramic substrate provided on at least a portion of one of its faces with a coating having photocatalytic properties, and comprising a mixture of (1) titanium oxide at least partly crystallized in the anatase form, and (2) an inorganic material in the form of an amorphous or partially crystalline oxide or mixture of oxides selected from the group consisting of SiO.sub.2, TiO.sub.2, SnO.sub.2, ZrO.sub.2 and Al.sub.2 O.sub.3, wherein said component (1) is obtained by thermal decomposition of titanium precursors selected from the group consisting of organo-metallic precursors and metallic halide precursors.
- 3. A coated substrate which is a glass, ceramic or vitro-ceramic substrate provided on at least a portion of one of its faces with a coating having a photocatalytic properties, and comprising titanium oxide at least partly crystallized in the anatase form, and a thin layer forming a barrier to alkali metals originating from the substrate, and located between said substrate and said coating, wherein the crystallized titanium oxide is in the form of crystallites with an average size of between 0.5 and 60 nm.
- 4. A coated substrate which is a glass, ceramic or vitro-ceramic substrate provided on at least a portion of one of its faces with a coating having photocatalytic properties, and comprising titanium oxide at least partly crystallized in the anatase form, and wherein said coating is hydrophilic, and has a contact angle with water below 5.degree. after exposure to luminous rays, wherein the crystallized titanium oxide is in the form of crystallites with an average size of between 0.5 and 60 nm.
- 5. A coated substrate which is a glass, ceramic or vitro-ceramic substrate provided on at least a portion of one of its faces with a coating having photocatalytic properties, and comprising titanium oxide at least partly crystallized in the anatase form, and wherein said coating has a root mean square (RMS) rugosity between 2 and 20 nm, wherein the crystallized titanium oxide is in the form of crystallites with an average size of between 0.5 and 60 nm.
- 6. The coated substrate according to claim 2, wherein the crystallized titanium oxide is in the form of crystallites with an average size of between 0.5 and 60 nm.
- 7. The coated substrate according to claim 2, wherein the inorganic material is a mixture of silicon oxide and titanium oxide.
- 8. The coated substrate according to claim 2, wherein the inorganic material is zirconium oxide.
- 9. The coated substrate according to claim 2, wherein the inorganic material is a mixture of zirconium oxide and silicon oxide.
- 10. The coated substrate according to claim 2, wherein the coating has a thickness of between 5 and 100 nm.
- 11. The coated substrate according to claim 3, wherein the coating has a thickness of between 5 and 100 nm.
- 12. The coated substrate according to claim 4, wherein the coating has a thickness of between 5 and 100 nm.
- 13. The coated substrate according to claim 5, wherein the coating has a thickness of between 5 and 100 nm.
- 14. The coated substrate according to claim 3, wherein the thin layer comprises silicon oxide, silicon nitride, silicon oxynitride, silicon oxycarbide, Al.sub.2 O.sub.3 :F or aluminum nitride.
- 15. A multi-layer glazing wherein at least one layer thereof is the coated substrate of claim 1.
- 16. A multi-layer glazing wherein at least one layer thereof is the coated substrate of claim 2.
- 17. A multi-layer glazing wherein at least one layer thereof is the coated substrate of claim 3.
- 18. A multi-layer glazing wherein at least one layer thereof is the coated substrate of claim 4.
- 19. A multi-layer glazing wherein at least one layer thereof is the coated substrate of claim 5.
- 20. A process for obtaining a coated substrate which is a glass, ceramic or vitro-ceramic substrate provided on at least a portion of one of its faces with a coating having photocatalytic properties, and comprising titanium oxide at least partly crystallized in the anatase form, comprising depositing a coating of titanium oxide at least partly crystallized in the anatase form on said substrate, to form said coating, followed by subjecting said coating to at least one annealing heat treatment, wherein the depositing of the coating of titanium oxide at least partly crystallized in the anatase form is by vacuum deposition.
- 21. The process according to claim 20, wherein the depositing of the coating of titanium oxide at least partly crystallized in the anatase form is by thermal decomposition of titanium precursors selected from the group consisting of organo-metallic precursors and metallic halide precursors.
- 22. A process for obtaining a coated substrate which is a glass, ceramic or vitro-ceramic substrate provided on at least a portion of one of its faces with a coating having photocatalytic properties and comprising titanium oxide at least partly crystallized in the anatase form, comprising depositing a coating of titanium oxide at least partly crystallized in the anatase form on said substrate, to form said coating, followed by subjecting said coating to at least one annealing heat treatment, wherein the depositing of the coating of titanium oxide at least partly crystallized in the anatase form is by reactive or non-reactive cathodic sputtering.
Priority Claims (1)
Number |
Date |
Country |
Kind |
95 10839 |
Sep 1995 |
FRX |
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Parent Case Info
This application is a 371 of PCT/FR96/01421 filed Sep. 13, 1996.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
102e Date |
371c Date |
PCT/FR96/01421 |
9/13/1996 |
|
|
5/28/1998 |
5/28/1998 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO97/10186 |
3/20/1997 |
|
|
US Referenced Citations (8)
Foreign Referenced Citations (2)
Number |
Date |
Country |
055577 |
Feb 1993 |
EPX |
63-10042 |
Feb 1988 |
JPX |
Non-Patent Literature Citations (2)
Entry |
Journal of Materials Science, vol. 24, No. 1 M. Takahashi et al. "pt-tio2 thin films on glass substrates as efficient photocataylsts", Jan. 1989. |
Chemical Abstracts, vol. 116, No. 10, abstract No. 89812a, p. 396, Sep. 1992. |