Glazing and Film Functional Coatings Having a Porous Inorganic Layer and a Polymeric Filler
Now, according to the present invention, functional coatings are provided that comprise both a porous inorganic layer and a polymeric filler. The porous inorganic layer comprises an inorganic material that can be formed into a layer at relatively low heat load. The polymeric filler fills the porosities in the porous inorganic layer, and can be, for example, wet coated onto the porous inorganic layer. The resulting functional coatings offer simpler and cheaper fabrication along with improved physical and optical performance.
1 . A glazing film, comprising:
a glazing film substrate;
a layer that reflects infrared radiation; and,
a functional coating, wherein said functional coating comprises:
a porous inorganic layer disposed in contact with said layer that reflects infrared radiation, wherein said porous inorganic layer defines porosities therein throughout; and,
a polymeric filler disposed on said porous inorganic layer, wherein said polymeric filler is disposed within said porosities and forms a continuous layer of said polymeric filler.
2 . The glazing film of claim 1 , wherein said glazing film substrate comprises poly(ethylene terephthalate).
3 . The glazing film of claim 1 , wherein said functional coating has a thickness of less than 1 micron.
4 . The glazing film of claim 1 , wherein said porous inorganic layer comprises a member selected from the group consisting of SiO x , BaF 2 , YF 3 , MgF 2 , AlF 3 , Al 2 O 3 , CaF 2 , CeF 3 , LaF 3 , and Na 3 AlF 6 .
5 . The glazing film of claim 1 , wherein said porous inorganic layer comprises a member selected from the group consisting of SiO x , BaF 2 , YF 3 , and MgF 2 .
6 . The glazing film of claim 1 , wherein said porous inorganic layer comprises SiO x or YF 3 .
7 . The glazing film of claim 1 , wherein said glazing film has an emissivity of less than 0.3.
8 . The glazing film of claim 1 , wherein said polymeric filler comprises an epoxy functionality, vinyl ether functionality, silane functionality, or acrylate functionality.
9 . The glazing film of claim 1 , wherein said polymeric filler comprises inorganic particles.
10 . The glazing film of claim 1 , wherein said layer that reflects infrared radiation is a metallic layer.
11 . The glazing film of claim 1 , wherein said layer that reflects infrared radiation is a multilayer stack.
12 . The glazing film of claim 1 , wherein said glazing film substrate comprises a hard or planarizing layer.
13 . A method of producing a glazing film, comprising:
providing a glazing film substrate comprising a layer that reflects infrared radiation;
disposing a porous inorganic layer on said layer that reflects infrared radiation, wherein said porous inorganic layer defines porosities therein throughout; and,
disposing a polymeric filler on said porous inorganic layer, thereby filling said porosities with said polymeric filler and forming a continuous layer of said polymeric filler.
14 . A glazing, comprising:
a rigid glazing substrate; and,
a glazing film, comprising:
a glazing film substrate;
a layer that reflects infrared radiation; and,
a functional coating, wherein said functional coating comprises:
a porous inorganic layer disposed in contact with said layer that reflects infrared radiation, wherein said porous inorganic layer defines porosities therein throughout; and,
a polymeric filler disposed on said porous inorganic layer, wherein said polymeric filler is disposed within said porosities and forms a continuous layer of said polymeric filler.