AU6698698A

Photocatalytically-activated self-cleaning article and method of making same

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 12 March 2018, 8.5 years ago.

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40 claims: 6 independent, 34 dependent

  1. 1
    We claim:1. A photocatalytically-activated self-cleaning article of manufacture comprising: a substrate having at least one surface;and a photocatalytically-activated self-cleaning coating deposited over the surface of the substrate by a process selected from the group consisting of chemical vapor deposition, magnetron sputtered vacuum deposition and spray pyrolysis.
  2. 10
    The photocatalytically-activated self-cleaning article of claim l wherein the photocatalytically-activated self-cleaning coating is deposited directly over the substrate.
  3. 24
    The photocatalytically-activated self-cleaning 20 article of claim 23 further comprising a sodium ion diffusion barrier layer disposed between the substrate and the photocatalytically-activated self-cleaning coating.
  4. 25
    The photocatalytically-activated self-cleaning 25 article of claim 24 wherein the sodium ion diffusion barrier layer is selected from the group consisting of tin oxides, silicon oxides, titanium oxides, zirconium oxides, fluorinedoped tin oxides, aluminum oxides, magnesium oxides, zinc oxides, cobalt oxides, chromium oxides, magnesium oxides, iron 30 oxides and mixtures thereof.
  5. 27
    A method for providing a titanium dioxide photocatalytically-activated self-cleaning coating over a continuous glass float ribbon during the manufacture of the float ribbon comprising the steps of:manufacturing a continuous glass float ribbon having a first major surface and an opposite major surface defined as a second major surface, the first major surface having a thin layer of a tin oxide diffused therein characteristic of forming the glass float ribbon on a molten tin bath;positioning a chemical vapor deposition coating apparatus over the surface of the float ribbon at a point in the manufacture of the float ribbon where the float ribbon has a temperature of at least about 400°C (752°F);directing a metal oxide, precursor selected from the group consisting of titanium tetrachloride, titanium tetraisopropoxids and titanium tetraethoxide in a carrier gas stream through said chemical vapor deposition apparatus over the surface of the float ribbon and annealing the float ribbon to produce a titanium dioxide photocatalytically-activated selfcleaning coating over the glass float ribbon.
  6. 28
    A method for providing a titanium dioxide photocatalytically-activated self-cleaning coating over a continuous glass float ribbon during the manufacture of the float ribbon comprising the steps of:manufacturing a continuous glass float ribbon having a first major surface and an opposite major WO 98/41480 PCT/US98/04785 - 59 surface defined as a second major surface, the first major surface having a thin layer of metal selected from the group consisting of tin, tin oxides and mixtures thereof diffused therein characteristic of forming the glass float ribbon on a molten tin bath;depositing a photocatalytically-activated selfcleaning coating over at least one of the major surfaces by positioning a spray p^ ,-olysis coating apparatus over the surface of the float ribbon at a point in the manufacture of the float ribbon where the float ribbon has a temperature of at least about 400°C (752°F), directing an aqueous suspension of titanyl acetylacetonate and wetting agent in an aqueous medium through said spray pyrolysis coating apparatus over the surface of the float ribbon and annealing the float ribbon in air to produce a titanium dioxide photocatalytically-activated selfcleaning coating over the glass float ribbon.
  7. 29
    In a method for forming a glass float ribbon wherein the method includes the steps of melting glass batch materials in a furnace; delivering the molten glass onto a bath of molten tin; pulling the molten glass across the tin bath whereupon the glass is sized and controllably cooled to form a dimensionally stable glass float ribbon; removing the float ribbon from the tin bath; moving the float ribbon by conveying roller through a lehr to anneal the float ribbon; moving the float ribbon to a cutting station on conveying rollers where the ribbon is cut into glass sheets, the improvement comprising:depositing a photocatalytically-activated selfcleaning coating over a surface of said float ribbon as the float ribbon is formed. WO 98/41480 PCT/US98/04785 - 60
  8. 32
    A method for the manufacture of a photocatalytically-activated self-cleaning article of manufacture comprising the steps of:providing an article of manufacture having at least one surface;depositing a photocatalytically-activated selfcleaning coating over the surface of the article of manufacture by a process selected from the group consisting of chemical vapor deposition, magnetron sputtered vacuum deposition and spray pyrolysis .