WO0158681A1

Antireflective uv blocking multilayer coatings wherin film has cerium oxide

Abstract

An antireflective multilayer coating including a thin film optical coating as well as a method for producing such a coating are provided. The thin film optical coating includes a layer of sol-gel derived cerium oxide, silicon dioxide, and at least one oxide of a tansition metal selected from Group IIIB through Group VIB of the Periodic Table which is capable of providing a refractive index of at least about 1.90. The thin film may optionally include colloidal gold particles. A method is provided for producing a thin film optical coating including a layer of sol-gel derived cerium oxide, silicon dioxide, and at least one oxide of a transition metal selected from Group IIIB through Group VIB of the Periodic Table by immersing a substrate in a solution comprising cerium nitrate hexahydrate, an alcohol and a chelating agent, withdrawing the substrate from the solution and heat treating the coated substrate to form the metal oxides.

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

21 claims: 5 independent, 16 dependent

  1. 1
    CLAIMS We claim:1. A thin film optical coating having a sol-gel derived layer of cerium oxide, silicon dioxide and at least one oxide of a transition metal of Group IIIB, Group IVB, Group VB or Group VIB of the Periodic Table.
  2. 4
    The coating in accordance with claim 1, wherein the sol-gel derived layer comprises at least about 85 mole percent of the cerium oxide, at least about 3 mole percent of the silicon dioxide, and from about 1 to about 10 mole percent of the at least one oxide of a transition metal.
  3. 5
    The coating in accordance with claim 1, wherein the layer transmits less than about 10 percent of light having a wavelength of below about 380 nm.
  4. 8
    A method for producing an ultraviolet absorbing sol-gel derived thin film optical coating on a substrate comprising:(a) immersing the substrate in a mixture comprising cerium nitrate hexahydrate, tetraethylorthosilicate, and a compound of at least one transition metal of Group IIIB, Group IVB, Group VB, or Group VIB of the Periodic Table;(b) withdrawing the substrate from the mixture to provide the substrate with a coating of the mixture;and (c) heat-treating the substrate to form an oxide layer.
  5. 20
    A method of decreasing transmission of red light through a multilayer antireflective optical coating comprising:(a) adding a compound of gold to a solution capable of providing a sol-gel derived layer of cerium oxide, silicon oxide, and at least one oxide of a transition metal of Group IIIB, Group IVB, Group VB, and Group VIB of the Periodic Table. (b) immersing a substrate in the solution;(c) withdrawing the substrate from the solution;and (d) heat treating the substrate to form the sol-gel derived layer having colloidal gold particles.