Abstract:
The present disclosure is directed to optically transparent and IR reflecting films having a metal oxide based composite layer which can synergistically improve the optical properties, solar properties, and production speed of the whole composite.
Abstract:
The present disclosure is directed to transparent infra-red (IR) reflective and/or low emissivity composite films which contain an ALD metal oxide based layer. Specific embodiments of the present disclosure are directed to an IR reflective composite film comprising: a transparent substrate layer comprising a polymer; one or more metal based layers; one or more silver based layers; one or more metal oxide based layers; and an ALD metal oxide based layer.
Abstract:
An electrode contains a first layer and a second layer. The first layer can be a dielectric layer and the second layer can be a layer containing a metal. A method for forming an electrode includes depositing the first layer and the second layer on a substrate.
Abstract:
A laminated support for flexible optoelectronic devices can include, in the order indicated, the following elements: a mineral glass sheet having a thickness of 300 microns or less and a refractive index n1 below 1.65, preferably below 1.60, ideally below 1.55, a diffusing adhesive layer, a uniaxially or biaxially stretched transparent organic polymer film with a refractive index n3, measured in a direction along the film's plane, of 1.7 or more.
Abstract:
The present disclosure relates to a multilayer composite that may include a multilayer composite that may include a first barrier layer and a first foam layer. The first foam layer may include a silicone-based matrix component, a flame retardant filler component, and an insulation filler component. The multilayer component may have a thickness of at least about 0.5 mm and no greater than about 10 mm. The multilayer component may also have a HBF flammability rating as measured according to ASTM D4986.
Abstract:
The present disclosure is directed to optically transparent and IR reflecting films having a metal oxide based composite layer which can synergistically improve the optical properties, solar properties, and production speed of the whole composite.
Abstract:
The present disclosure is directed to solar control films containing a photochromic layer. For example, in certain embodiments, a solar control film includes a photochromic layer comprising an inorganic photochromic material and an infrared control layer.
Abstract:
The present disclosure is directed to optically transparent and IR reflecting films having a metal oxide based composite layer which can synergistically improve the optical properties, solar properties, and production speed of the whole composite.