Nova Patents
CA2294991A1

Coatings with a silver layer

Abstract

The invention relates to a process for the production of a thin-layer system with a tranparent silver layer by means of magnetron cathode sputtering, where between the substrate and the silver layer is arranged a lower antireflection layer, which comprises a titanium oxide layer applied directly onto the substrate, and preferably a zinc oxide layer contiguous to the silver layer. To allow for the achievement of silver layers of extremely high specific electrical conductivity the 15-50 nm thick titanium oxide layer is applied by means of medium-frequency sputtering from two titanium cathodes in an oxygencontaining atmosphere onto the substrate and a 2-18 nm thick zinc oxide layer is applied directly onto the titanium oxide layer. The invention is additionally directed to glass panes, including double glazing panes, with such coatings.

CA2294991A1, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 24 June 2018, 8.2 years ago.

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11 claims: 7 independent, 4 dependent

  1. 1
    Patent claims 1. Process for coating glass with a coating comprising at least one silver layer and inner and outer antireflection layers by magnetron sputtering characterized in that the inner antireflection layer comprises a layer of titanium oxide applied by medium frequency sputtering.
  2. 4
    Process according to any of claims 1 to 3, characterized in that a 15 - 50 nm thick titanium oxide layer is applied by means of medium-frequency sputtering from two titanium cathodes in an oxygen-containing atmosphere onto the substrate and that the 2 - 18 nm thick zinc oxide layer is applied directly onto the titanium oxide layer.
  3. 5
    Process according to any of the preceding claims, characterized in that the titanium oxide layer is applied by using a sputtering frequency of 5 - 100, preferably 10-40 kHz.
  4. 6
    Process according to any of the preceding claims, characterized in that the titanium oxide layer is applied as nitrogenous titanium oxide layer with a nitrogen content N/(N + O) in the layer of 5 to 50 atomic percent in a coating atmosphere containing argon, nitrogen and oxygen. AMENDED SHEET IPEA/EP 4 . CA 02294991 1999-12-20 • · * >
  5. 8
    Process according to any of the preceding claims, characterized in that the titanium oxide layer is applied at a coating rate of minimum 30 nm/min, preferably more than 50 nm/min.
  6. 9
    Process according to any of the preceding claims, characterized in that the zinc oxide layer is applied by medium-frequency sputtering from two zinc targets in an oxygen-containing atmosphere.
  7. 10
    Glass pane with a transparent thin-layer system applied by means of magnetron cathode sputtering, the system consisting of a multiple lower antireflection layer, which comprises a titanium oxide layer directly on the glass pane, as well as a zinc oxide layer contiguous to the silver layer, a transparent silver layer, optionally at least one pair of layers consisting of a spacing layer and a further transparent silver layer, as well as an outer antireflection layer, characterized in that the titanium oxide layer is a titanium oxide layer with a thickness of 15 - 50 nm applied by means of medium-frequency sputtering from two titanium cathodes in an oxygen-containing atmosphere, that the titanium oxide layer is directly contiguous to a zinc oxide layer with a thickness of 2 - 18 nm, and that the silver layer contiguous to the lower antireflection layer possesses a thickness of 7 - 20 nm and a specific conductivity of at least 2.1 x 105 S/cm.