CA2204011C

Antireflection coating for a temperature sensitive substrate

Abstract

A multilayer antireflection coating (10) for a temperature sensitive substrate (15) such as plastic. One layer is a DC reactively sputtered metal oxide which may be deposited quickly and without imparting a large amount of heat to the substrate. Another layer has a refractive index lower than the substrate.

CA2204011C, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Expired 30 October 2015, 10.9 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

17 claims: 5 independent, 12 dependent

  1. 1
    CA 02204011 1997-04-29 -19ΤΗΞ EMBODIMENTS OF THE INVENTION IN WHICH AN EXCLUSIVE PROPERTY OR PRIVILEGE IS CLAIMED ARE DEFINED AS FOLLOWS:1. A coated article comprising: a temperature-sensitive substrate having a melting point lower than glass;an anti-reflection coating including a plurality of layers substantially transparent to visible light, at least one of said layers being a sputtered material having a refractive index higher than said substrate and selected from the group consisting of tin oxide, indium oxide, zinc oxide, tin-doped indium oxide, antimony-doped tin oxide, tin-bismuth oxide, and tin-zinc oxide, and at least one other layer having a refractive index lower than said substrate.
  2. 2
    The article of Claim 1 wherein said substrate is plastic.
  3. 3
    The article of Claim 1 wherein said other layer is substantially silicon dioxide.
  4. 4
    The article of Claim 3 wherein said sputtered material is tin oxide.
  5. 5
    ' The article of Claim 3 wherein said sputtered material is tin-doped indium oxide.
  6. 6
    The article of Claim 1 wherein said sputtered material has a refractive index between 1,9 and 2.2.
  7. 7
    The article of Claim 1 wherein said plurality of 75236-80 CA 02204011 1997-06-18 - 20 layers includes four layers designated the first, second, third, and fourth layers in consecutive numerical order beginning with the layer farthest from the substrate, said first layer having a refractive index lower than said substrate and having an optical thickness of about onequarter wavelength at a wavelength between 480 and 560 nanometers, said second layer having a refractive index higher than said substrate and having an optical thickness between about one-quarter and one-third of a wavelength at a wavelength between 480 and 560 nanometers, said third layer having a refractive index lower than said second layer, said fourth layer having a refractive index greater than said third layer, said third and fourth layers having a total optical thickness less than one-quarter wavelength at a wavelength between 480 and 560 nanometers, and at least one of said second and fourth layers being said selected sputtered material.
  8. 8
    The article of any one of claims 1 to 7, wherein the sputtered material is DC reactively sputtered.
  9. 9
    An anti-reflection coating for a substrate, comprising! four layers substantially transparent to visible light 75236-80 CA 02204011 1997-06-18 - 21 and designated the first, second, third, and fourth layers in consecutive numerical order beginning with the layer farthest from the substrate? said first layer having a refractive index lower than said substrate and having an optical thickness of about onequarter wavelength at a wavelength between 480 and 560 nanometers ? said second layer having a refractive index higher than said substrate and having an optical thickness between about one-quarter and one-third of a wavelength at a wavelength between 480 and 560 nanometers? said third layer having a refractive index lower than said second layer? said fourth layer having a refractive index greater than said third layer? said third and fourth layers having a total optical thickness less than one-quarter wavelength at a wavelength between 480 and 560 nanometers? at least one of said second and fourth layers being a sputtered material selected from the group consisting of tin oxide, indium oxide, zinc oxide, tin-doped indium oxide, antimony-doped tin oxide, tin-bismuth oxide, and tin-zinc oxide.
  10. 10
    The coating of Claim 9 wherein both said second and fourth layers are sputtered materials selected from the group consisting of tin oxide, indium oxide, zinc oxide, tin-doped 75236-80 CA 02204011 1997-06-18 - 22 indium oxide, antimony-doped tin oxide, tin-bismuth oxide, and tin-zinc oxide.
  11. 11
    The coating of Claim 10 wherein said first and third layers are substantially composed of silicon dioxide.
  12. 12
    The coating of Claim 11 wherein said sputtered material in said second and fourth layers is tin oxide.
  13. 13
    The coating of Claim 12 wherein said first layer has a physical thickness of about 94.2 nanometers, said second layer has a physical thickness of about 76.4 nanometers, said third layer has a physical thickness of about 31.9 nanometers, and said fourth layer has a physical thickness of about 20.3 nanometers .
  14. 14
    The coating of Claim 12 wherein said first layer has a physical thickness of about 92.2 nanometers, said second layer has a physical thickness of about 78.1 nanometers, said third layer has a physical thickness of about 32.2 nanometers, and said fourth layer has a physical thickness of about 18.6 nanometers.
  15. 15
    The coating of any one of claims 9 to 14, wherein the sputtered material is DC reactively sputtered.
  16. 16
    A process for making a coating article, comprising 75236-80 CA 02204011 1997-06-18 - 23 the steps ofî providing a temperature-sensitive surface having a melting point lower than glassj and disposing an anti-reflection coating including a plurality of layers substantially transparent to visible light on said surface, said disposing step including the steps of sputtering a material selected from the group consisting of tin oxide, indium oxide, zinc oxide, tin-doped indium oxide, antimony-doped tin oxide, tin-bismuth oxide, and tinzinc oxide, and depositing at least one other layer having a refractive index different from said sputtered material.
  17. 17
    The process of Claim 16, wherein the sputtering is achieved by DC reactive sputtering. SMART & BIGGAR OTTAWA, CANADA PATENT AGENTS 75236-80