EP0875289A1

Photocatalyst composite and process for producing the same

Abstract

A photocatalyst composite is provided which comprise a substrate having particles of a photocatalyst such as titanium oxide, adhered thereon via a less degradative adhesive such as a fluorinated polymer comprising a copolymer of a vinyl ester and/or vinyl ether and a fluoroolefin, or a silicon based polymer. Furthermore, a process for producing the photocatalyst composite and a coating composition containing the photocatalyst composite are provided.

EP0875289A1, drawing sheet 1
Sheet 1 of 1

Term

Term ended

Projected expiry passed 23 June 2014, 12.3 years ago.

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12 claims: 3 independent, 9 dependent

  1. 1
    A photocatalyst composite comprising a substrate having photocatalyst particles adhered thereon via a less degradative adhesive, characterized in that said less degradative adhesive is one or more polymers selected from the group consisting of a fluorinated polymer and a silicone based polymer.
  2. 2
    The photocatalyst composite according to Claim 1, wherein said photocatalyst particles and an adsorbent are adhered to the substrate via said less degradative adhesive.
  3. 3
    The photocatalyst composite according to Claim 1, wherein on the substrate is provided a first layer comprising an adhesive without containing any photocatalyst particles and further on said first layer is provided a second layer comprising the less degradative adhesive and the photocatalyst particles.
  4. 4
    The photocatalyst composite according to Claim 3, wherein the adhesive of said first layer is a less degradative adhesive.
  5. 5
    The photocatalyst composite according to Claim 3, wherein said first layer consists of a less degradative adhesive and inorganic particles.
  6. 6
    The photocatalyst composite according to Claim 1, wherein said photocatalyst particles are of titanium oxide.
  7. 7
    The photocatalyst composite according to Claim 1, wherein said photocatalyst particles contain at least one selected from the group consisting of metals and metal compounds of V, Fe, Co, Ni, Cu, Zn, Ru, Rh, Pd, Ag, Pt and Au as a second component inside said photocatalyst particles and/or on the surfaces thereof.
  8. 8
    A process for producing a photocatalyst composite, by disposing photocatalyst particles and an adhesive on a substrate and then solidifying the adhesive to adhere the photocatalyst particles via the adhesive, characterized in that said adhesive is a less degradative one which is one or more polymers selected from the group consisting of a fluorinated polymer and a silicone based polymer.
  9. 9
    The process for producing a photocatalyst composite according to Claim 8, wherein the disposing of said photocatalyst particles and said less degradative adhesive is accomplished by coating or spraying a coating composition consisting of a dispersion of said photocatalyst particles and said less degradative adhesive in a solvent on said substrate.
  10. 10
    The process for producing a photocatalyst composite according to Claim 8, which comprises the steps of providing a first layer of an adhesive free from photocatalyst particles on a substrate by coating or spraying said substrate with said adhesive and fixing said adhesive onto said substrate, and then providing a second layer comprising a less degradative adhesive and the photocatalyst particles on said first layer by disposing said less degradative adhesive and said photocatalyst particles on said first layer and then fixing said adhesive and photocatalyst particles on said first layer.
  11. 11
    A coating composition characterized in that by comprising a dispersion of photocatalyst particles and a less degradative adhesive in a solvent, said adhesive being one or more polymers selected from the group consisting of a fluorinated polymer and a silicone based polymer.
  12. 12
    The coating composition according to Claim 11, comprising a dispersion of the photocatalyst particles, a less degradative adhesive and a coupling agent in a solvent.