Multifunctional material having carbon-doped titanium oxide...

C - Chemistry – Metallurgy – 23 – C

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C23C 8/28 (2006.01) B01J 35/02 (2006.01) C22C 14/00 (2006.01)

Patent

CA 2540788

A multi-functional material having a carbon doped titanium oxide layer which contains the carbon being doped in the state of a Ti-C bond, and is excellent in durability (high hardness, scratch resistance, abrasion resistance, chemical resistance, heat resistance) and also functions as a photocatalyst being responsive to a visible light; and a method for producing the multi- functional material, which comprises subjecting the surface of a substrate at least the surface layer of which comprises titanium, a titanium alloy, a titanium alloy oxide or a titanium oxide to a heat treatment in an atmosphere of a combustion gas from a gas containing a hydrocarbon as a primary component or an atmosphere of a gas containing a hydrocarbon as a primary component, so as for the surface to have a temperature of 900 to 1500~C, or exposing said surface of the substrate directly to a combustion flame from a gas containing a hydrocarbon as a primary component to treat the surface with heat so as for the surface to have a temperature of 900 to 1500~C.

L'invention concerne un matériel multifonctionnel comprenant une couche d'oxyde de titane dopé au carbone, qui contient le carbone dont il est dopé à l'état d'une liaison Ti-C; présente une excellente durabilité (haute dureté, résistance aux griffures, résistance à l'abrasion, résistance aux produits chimiques, résistance thermique); et fonctionne également comme un photocatalyseur sensible à la lumière visible. L'invention concerne également un procédé de production du matériel multifonctionnel, qui consiste à soumettre la surface d'un substrat, dont au moins la couche superficielle comprend du titane, un alliage de titane, un oxyde d'alliage de titane ou un oxyde de titane, à un traitement thermique dans une atmosphère d'un gaz de combustion créée par un gaz contenant un hydrocarbure comme constituant principal, de façon à amener la surface à une température de 900 à 1500 ·C, ou à exposer ladite surface du substrat directement à une flamme de combustion provenant d'un gaz contenant un hydrocarbure comme constituant principal, afin de réaliser un traitement thermique de la surface pouvant amener celle-ci à une température de 900 à 1500 ·C.

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