Antireflective articles and methods of making the same
A composite having (a) a substrate that has opposing first and second surfaces, the substrate being at least 90% transmissive in visible light and has less than 5% haze, (b) a nanostructured article including a matrix and a nanoscale dispersed phase and having a random nanostructured anisotropic surface; and (c) an optically clear adhesive disposed on the second surface of the substrate.
1. A composite comprising:
(a) a substrate having at least 90% transmission in visible light and less than 5% haze, the substrate having opposing first and second surfaces;
(b) a nanostructured article disposed on the first surface of the substrate, the nanostructured article comprising a matrix and a nanoscale dispersed phase, and having a major surface that is only an exposed etched random nanostructured anisotropic surface defined by nano-pillars or nano-columns comprising the matrix and nanoscale dispersed phase, wherein the nano-pillars and nano-columns are structural asperities having an aspect ratio of 5:1 or greater, and wherein the nanostructured article has a length along an x-direction, a width along a y-direction, and a thickness along a z-direction, wherein the nanoscale features comprise nano-pillars generally in the z-direction, wherein a majority of the nano-pillars are capped with physically exposed nanoscale dispersed phase from the nanoscale phase in the matrix;
(c) an optically clear adhesive disposed on the second surface of the substrate, the optically clear adhesive having at least 90% transmission in visible light and less than 5% haze.
2. A display for electronic application comprising the composite of claim 1 laminated to a glass substrate such that the optically clear adhesive contacts the glass substrate, or a polarizer and assembling the laminates with a liquid display module.
3. The composite of claim 1 , wherein the matrix comprises a hardcoat comprising nanoparticles of SiO 2 , ZrO 2 and combinations thereof dispersed in a crosslinkable matrix comprising multi(meth)acrylate, polyester, epoxy, fluoropolymer, urethane, siloxane, or blends or copolymers thereof.
4. The composite of claim 1 , wherein the nanoscale dispersed phase comprises nanoparticles of SiO 2 , ZrO 2 , TiO 2 , ZnO, Al 2 O 3 , calcium carbonate, magnesium silicate, indium tin oxide, antimony tin oxide, poly(tetrafluoroethylene), carbon, and combinations thereof.
5. The composite of claim 4 , wherein the nanoparticles having average particle size of less than about 100 nm.
6. The composite of claim 5 , wherein the nanoparticles are surface modified.
7. The composite of claim 1 , wherein the matrix comprises a polymer selected from the group consisting of polycarbonate, poly(meth)acrylate, polyester, nylon, siloxane, fluoropolymer, urethane, epoxy, cyclic olefin copolymer, triacetate cellulose, diacrylate cellulose or blends or copolymers thereof.
8. The composite of claim 1 , wherein the matrix comprises an inorganic material selected from the group of silicon oxide and tungsten carbide.
9. The composite of claim 1 , wherein the substrate comprises a cross-linkable material selected from multi(meth)acrylate, polyester, epoxy, fluoropolymer, urethane, siloxane, or blends or copolymers thereof.
10. The composite of claim 1 , wherein the substrate comprises a polymer selected from the group consisting of polycarbonate, poly(meth)acrylate, polyester, nylon, siloxane, fluoropolymer, urethane, epoxy, cyclic olefin copolymer, triacetate cellulose, diacrylate cellulose or blends or copolymers thereof.
11. The composite of claim 1 , wherein the substrate comprises a glass or a polarizer.
12. The article of claim 1 , wherein the matrix comprises an alloy or a solid solution.
13. The composite of claim 1 , wherein the concentration of the dispersed phase within the matrix is between about 5 and 90 weight percent.