Claims
- 1. A coated substrate prepared by a process comprising:(a) preparing a substrate for deposition with a coating, wherein the coating comprises crystallized particles of an oxide of a metal A having photocatalytic properties, a mineral binder comprising at least one oxide of a metal B having photocatalytic properties, optionally at least one oxide of a metal M devoid of photocatalytic properties, and optionally at least one silicon oxide; (b) depositing the coating onto a surface of the substrate, by depositing the coating from liquid-phase dispersions containing oxides of the metals A and B, optionally the oxide of metal M and optionally the silicon oxide, in a relative proportion by weight of the metals and Si given by A/(B+M+Si), the relative proportion ranging from 60/40 to 40/60; and (c) allowing the coating to set; to provide the coated substrate, wherein the coating comprises crystallized particles of the oxide of metal A having photocatalytic properties incorporated into the coating using an at least partially crystallized mineral binder comprising the oxide of metal B also having photocatalytic properties in the crystallized state, optionally at least one oxide of a metal M devoid of photocatalytic properties and optionally a silicon oxide.
- 2. The coated substrate of claim 1, wherein the crystallized particles have a size of about 5 nm to about 80 nm.
- 3. The coated substrate of claim 1, wherein the mineral binder is at least partially in the form of grains having a size of between 5 nm to 25 nm.
- 4. The coated substrate of claim 1, wherein the coating comprises a partially crystallized mineral binder comprising TiO2 and crystallized TiO2 particles essentially in anatase form.
- 5. The coated substrate of claim 1, wherein at least one layer is inserted between the substrate and the coating.
- 6. The coated substrate of claim 5, wherein the at least one layer functions as a barrier to alkali metals or has an optical, antistatic, or adhesion function.
- 7. The coated substrate of claim 6, wherein the at least one layer is based on a Si compound or a doped metal oxide.
- 8. The coated substrate of claim 1, wherein the substrate comprises at least one transparent material of glass, plastic, or composite materials.
- 9. The coated substrate of claim 1, wherein the coating comprises silicon oxide.
- 10. The coated substrate of claim 1, wherein the at least one oxide of metal B is selected from the metals Ti, Zn, Sn, and W.
- 11. The coated substrate of claim 1, wherein the coating has a porosity of at least 40%.
- 12. A coated substrate prepared by a process comprising:(a) preparing a substrate for deposition with a coating, wherein the coating comprises crystallized particles of an oxide of a metal A having photocatalytic properties, a mineral binder comprising at least one oxide of a metal B having photocatalytic properties, optionally at least one oxide of a metal M devoid of photocatalytic properties, and optionally at least one silicon oxide; (b) depositing the coating onto a surface of the substrate, by depositing the coating from liquid-phase dispersions containing oxides of the metals A and B, optionally the oxide of metal M and optionally the silicon oxide, in a relative proportion by weight of the metals and Si given by A/(B+M+Si), the relative proportion ranging from 60/40 to 40/60; and (c) allowing the coating to set, to provide the coated substrate, wherein the coating comprises crystallized particles of the oxide of metal A having photocatalytic properties incorporated into the coating using an at least partially crystallized mineral binder comprising the oxide of metal B also having photocatalytic properties in the crystallized state, optionally at least one oxide of a metal M devoid of photocatalytic properties and optionally a silicon oxide, wherein the coating has coherence domains having a size of about 5 nm to about 20 nm.
- 13. The coated substrate of claim 12, wherein the coating comprises silicon oxide.
- 14. The coated substrate of claim 12, wherein the at least one oxide of metal B is selected from the metals Ti, Zn, Sn, and W.
- 15. The coated substrate of claim 12, wherein the coating has a porosity of at least 40%.
- 16. A coated substrate prepared by a process comprising:(a) preparing a substrate for deposition with a coating, wherein the coating comprises crystallized particles of an oxide of a metal A having photocatalytic properties, a mineral binder comprising at least one oxide of a metal B having photocatalytic properties, optionally at least one oxide of a metal M devoid of photocatalytic properties, and optionally at least one silicon oxide; (b) depositing the coating onto a surface of the substrate, by depositing the coating from liquid-phase dispersions containing oxides of the metals A and B, optionally the oxide of metal M and optionally the silicon oxide, in a relative proportion by weight of the metals and Si given by A/(B+M+Si), the relative proportion ranging from 60/40 to 40/60; and (c) allowing the coating to set, to provide the coated substrate, wherein the coating comprises crystallized particles of the oxide of metal A having photocatalytic properties incorporated into the coating using an at least partially crystallized mineral binder comprising the oxide of metal B also having photocatalytic properties in the crystallized state, optionally at least one oxide of a metal M devoid of photocatalytic properties, and optionally a silicon oxide, wherein the coating comprises a mineral binder comprising partially crystallized TiO2 and crystallized TiO2 particles essentially in anatase form and is present in an amount of between 15 and 45 μg/cm2.
- 17. The coated substrate of claim 16, wherein the coating comprises silicon oxide.
- 18. The coated substrate of claim 16, wherein the at least one oxide of metal B is selected from the metals Ti, Zn, Sn, and W.
- 19. The coated substrate of claim 16, wherein the doped metal oxide is a fluorine-doped tin oxide.
- 20. The coated substrate of claim 16, wherein the coating has a porosity, calculated from the refractive index, of at least 40%.
Priority Claims (1)
Number |
Date |
Country |
Kind |
98/02676 |
Mar 1998 |
FR |
|
Parent Case Info
This is a continuation of application Ser. No. 09/655,146, filed Sep. 5, 2000, now U.S. Pat. No. 6,465,088 B1.
US Referenced Citations (4)
Foreign Referenced Citations (6)
Number |
Date |
Country |
0 645 516 |
Mar 1995 |
EP |
2 681 534 |
Mar 1993 |
FR |
WO 9600198 |
Jan 1996 |
WO |
WO 9710185 |
Mar 1997 |
WO |
WO 9710186 |
Mar 1997 |
WO |
WO 9823549 |
Jun 1998 |
WO |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09/655146 |
Sep 2000 |
US |
Child |
10/234159 |
|
US |