EP0590477A1

Architectural material using metal oxide exhibiting photocatalytic activity.

Abstract

A metal-oxide layer exhibiting a photocatalytic activity function is formed on the surface of an inorganic architectural material, such as external wall material, roofing material, internal wall material, flooring material, and ceiling material, including glass, tile, concrete, stone, metal, and the like, so as to provide the property of deodorizing a space coming in contact with the architectural material, and antimold, antisoiling properties, and ultraviolet-ray absorbency of the surface of the architectural material, as well as the long-term maintenance of these properties. Preferably, the metal-oxide layer is formed by fixing a metal-oxide thin film on the surface of the architectural material. Alternatively, the metal-oxide layer is formed as an architectural material in which the surface thereof and its vicinity are mainly formed of a metal mixture including a metal oxide, such as titanium oxide, and palladium for improving photocatalytic activity, or a metal mixture including a metal constituting the metal oxide, such as titanium, and a composite of a second metal, while its inner portion is substantially formed of a metal mixture including titanium or a composite of titanium and palladium, the surface and its vicinity as well as the inner portion being formed continuously. As a method of manufacturing the latter architectural material, a metal mixture, i.e., an alloy, of titanium and a metal for improving photocatalytic activity, such as palladium, is fabricated, and after the alloy is processed into a desired shape, the processed alloy is subjected to oxidation treatment.

EP0590477A1, drawing sheet 1
Sheet 1 of 17

Term

Term ended

Projected expiry passed 21 September 2013, 13 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

16 claims: 4 independent, 12 dependent

  1. 1
    An architectural material comprising:a base having a light-receiving surface and used as an architectural material as an external wall material, a roofing material, an internal wall material, a flooring material, or a ceiling material;and    at least one metal-oxide layer exhibiting photocatalytic activity and selected from the group consisting of titanium dioxide, iron oxide, silver oxide, copper oxide, tungsten oxide, aluminum oxide, silicon oxide, zinc oxide, and strontium titanate, said at least one metal-oxide layer being formed on a surface of said base.
  2. 2
    An architectural material comprising:a base having a light-receiving surface and used as an architectural material as an external wall material, a roofing material, an internal wall material, a flooring material, or a ceiling material;and    at least one metal-oxide thin film exhibiting photocatalytic activity and selected from the group consisting of titanium dioxide, iron oxide, silver oxide, copper oxide, tungsten oxide, aluminum oxide, silicon oxide, zinc oxide, and strontium titanate, said at least one metal-oxide layer being formed on a surface of said base.
  3. 3
    An architectural material according to Claim 2, wherein said thin film is formed by coating quarts glass or tile having the light-receiving surface with a titanium oxide sol, and by sintering the same.
  4. 4
    An architectural material according to Claim 2, wherein said thin film is formed by coating quarts glass or tile having the light-receiving surface with a titanium oxide sol with titanium dioxide powder added thereto, and by sintering the same.
  5. 5
    An architectural material according to Claim 4, wherein palladium is carried in the thin film of the titanium oxide sol.
  6. 6
    An architectural material for use as an external wall material, a roofing material, an internal wall material, a flooring material, or a ceiling material, wherein a surface of said architectural material and its vicinity are substantially formed of a metal mixture including a metal oxide which exhibits photocatalytic activity and a second metal for improving the photocatalytic activity of said metal oxide, and an inner portion of said architectural material is substantially formed of a metal mixture including a metal of the same kind as that which constitutes said metal oxide and said second metal for improving the photocatalytic activity of said metal oxide, said surface and its vicinity as well as said inner portion being formed continuously.
  7. 7
    An architectural material according to Claim 6, wherein said surface and its vicinity are substantially formed of a metal mixture which is expressed by the following general formula (I):[TiO₂] x [TiM y ] 1-x or [TiO₂] x M 1-x    (I) (where M represents a metal selected from the group consisting of Pt, Au, Pd, Ag, Cu, Ni, and Co;x is such that 0.3 ≦ x < 1;and y is an integer peculiar to said metal M combining with Ti and is any one of 1, 2, and 3),    and said inner portion is a metal mixture which is expressed by the following general formula (II):         [Ti] x [TiM y ] 1-x or [Ti] x M 1-x    (II) (where M represents a metal selected from the group consisting of Pt, Au, Pd, Ag, Cu, Ni, and Co;x is such that 0.3 ≦ x < 1;and y is an integer peculiar to said metal M combining with Ti and is any one of 1, 2, and 3).
  8. 8
    An architectural material according to Claim 6, wherein said surface and its vicinity are substantially formed of a metal mixture including titanium oxide and palladium, and said inner portion is substantially formed of a metal mixture including titanium and palladium, said surface and its vicinity as well as said inner portion being formed continuously.
  9. 9
    An architectural material according to Claim 1 or 2, wherein said architectural material is glass, tile, roof tile, concrete, stone, metal, or a composite material thereof.
  10. 10
    A method of manufacturing an architectural material, comprising the steps of:fabricating a metal mixture including a metal constituting a metal oxide exhibiting photocatalytic activity and a second metal for improving the photocatalytic activity of said metal oxide;processing said metal mixture into a desired shape;and    subjecting said processed metal mixture to oxidation treatment.
  11. 11
    An architectural material according to Claim 6, wherein said metal oxide is at least one compound selected from the group consisting of titanium dioxide, iron oxide, silver oxide, copper oxide, tungsten oxide, aluminum oxide, silicon oxide, zinc oxide, and strontium titanate.
  12. 12
    A method of manufacturing an architectural material according to Claim 10, wherein said metal constituting said metal oxide exhibiting the photocatalytic activity is selected from the group consisting of titanium, iron, silver, copper, aluminum, tungsten, zinc, and strontium.
  13. 13
    A method of manufacturing an architectural material according to Claim 10, wherein said second metal for improving the photocatalytic activity of said metal oxide is selected from the group consisting of platinum, gold, palladium, silver, copper, nickel, rhodium, niobium, tin, and cobalt.
  14. 14
    A method of manufacturing an architectural material according to Claim 10, wherein said metal mixture is expressed by the following general formula (II):[Ti] x [TiM y ] 1-x or [Ti] x M 1-x    (II) (where M represents a metal selected from the group consisting of Pt, Au, Pd, Ag, Cu, Ni, and Co;x is such that 0.3 ≦ x < 1;and y is an integer peculiar to said metal M combining with Ti and is any one of 1, 2, and 3).
  15. 15
    A method of manufacturing an architectural material according to Claim 10, wherein a metal mixture including titanium and palladium is fabricated, and after said metal mixture is formed into a desired shape, said metal mixture is subjected to anodic oxidation treatment.
  16. 16
    A method of manufacturing an architectural material according to Claim 10, wherein a metal mixture including titanium and palladium is fabricated, and after said metal mixture is formed into the shape of a thin film, said metal mixture is subjected to anodic oxidation treatment, and is bonded to the surface of a desired architectural material.
Independent claims16