EP0854112A1

Method for coating amorphous titanium peroxide

Abstract

A hydrophilic treatment by the use of a surface active agent and the like is not required for a base even the surface of which is water-repellent or thermoplastic when a viscous amorphous type titanium peroxide is used for fixing a base as a binder. In addition, a thin layer of a photocatalyst semiconductor, a dielectrical ceramics or an electrical ceramics can be easily formed by adhering particles of a photocatalyst semiconductor, a dielectrical ceramics or an electrical ceramics to the layer of a viscous amorphous type titanium peroxide, which is a layer as a binder, in a homogeneously floating state gas. Furthermore, a layer of a titanium oxide having a photocatalyst function can be formed when a base is fixed with a viscous amorphous type titanium peroxide.

EP0854112A1, drawing sheet 1
Sheet 1 of 1

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Term ended

Projected expiry passed 1 August 2017, 9.1 years ago.

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11 claims: 7 independent, 4 dependent

  1. 1
    A method for fixing an amorphous type titanium peroxide layer on a substrate, which comprises the steps of:coating the substrate with an amorphous type titanium peroxide sol, and then drying and calcining the coated substrate at ordinary temperature to less than 250°C.
  2. 2
    A method for fixing an amorphous type titanium peroxide layer on a substrate, which comprises the steps of:coating the substrate with a viscous amorphous type titanium peroxide without hydrophilization treatment of a surface of the substrate with a surface active agent or the like, and then drying and calcining the coated substrate at ordinary temperature to less than 250°C.
  3. 3
    A board having an amorphous type titanium peroxide layer obtained by a method described in Claim 1 or 2.
  4. 4
    A method for fixing a titanium oxide layer on a substrate, which comprises the steps of:coating the substrate with an amorphous type titanium peroxide sol, and then drying and calcining the coated substrate at 250°C or more.
  5. 5
    A method for fixing a titanium oxide layer on a substrate, which comprises the steps of:coating the substrate with a viscous amorphous type titanium peroxide without hydrophilization treatment of a surface of the substrate with a surface active agent or the like, and then drying and calcining the coated substrate at 250°C or more.
  6. 6
    A board having a titanium oxide layer obtained by a method described in Claim 4 or 5.
  7. 7
    A method for fixing a thin layer of a photocatalytic semiconductor, a dielectrical ceramic material or a conductive ceramic material on a substrate, which comprises the steps of:coating the substrate with an amorphous type titanium peroxide sol to form an amorphous type titanium peroxide layer, and then attaching fine particles of the photocatalytic semiconductor, the dielectrical ceramic material or the conductive ceramic material in a uniformly scattered state in a gas onto the amorphous type titanium peroxide layer, while the amorphous type titanium peroxide layer is still sticky.
  8. 8
    A method for fixing a thin layer of a photocatalytic semiconductor, a dielectrical ceramic material or a conductive ceramic material on a substrate, which comprises the steps of:coating the substrate with a viscous amorphous type titanium peroxide without hydrophilization treatment of a surface of the substrate with a surface active agent or the like, to form an amorphous type titanium peroxide layer, and then attaching fine particles of the photocatalytic semiconductor, the dielectrical ceramic material or the conductive ceramic material in a uniformly scattered state in a gas onto the amorphous type titanium peroxide layer while the amorphous type titanium peroxide layer is still sticky.
  9. 9
    A board which comprises a substrate, an amorphous type titanium peroxide layer formed on the substrate, and a thin layer of a photocatalytic semiconductor, a dielectrical ceramic material or a conductive ceramic material formed on the amorphous type titanium peroxide layer, obtained by a method described in Claim 7 or 8.
  10. 10
    A method for preparing viscous amorphous type titanium peroxide, which comprises the steps of:reacting a titanium tetrachloride solution with an ammonium hydroxide solution in an acidic range of pH 2 to 6, adding aqueous hydrogen peroxide to sedimented lightly bluish white orthotitanic acid hydrate, carrying out a reaction with stirring at a low temperature, and then curing it at ordinary temperature.
  11. 11
    Viscous amorphous type titanium peroxide prepared by a method described in Claim 10.