Abstract:
A functional film manufacturing method, in manufacturing a functional film having an organic layer on a support and an inorganic layer on the organic layer, comprises steps of preparing a coating material containing an organic compound which has a glass transition temperature of 100° C. or higher and is to be the organic layer, and an organic solvent; coating a support surface with 5 cc/m2 or more of the coating material such that the organic layer thickness becomes 0.05 to 3 μm; forming the organic layer by drying the coating material on the support surface such that the coating material has a viscosity of 20 cP or higher and a surface tension of 34 mN/m or less in a decreasing-rate-of-drying state, and curing the organic compound; and forming the inorganic layer on the organic layer surface by a vapor phase deposition method accompanied by generation of plasma.
Abstract:
The present invention relates to a functional film and a method for manufacturing the same, the functional film being organically and inorganically laminated to have a desired function such as high gas barrier performance and having high adhesiveness between inorganic and organic layers. The organic layer on top of the inorganic layer contains an organic solvent; an organic compound formed of the organic layer; and a silane coupling agent with a concentration between 0.1 and 25 percentages by mass excluding the organic solvent, the organic layer uses a coating material not containing a pH controller, and the organic layer is formed through curing via a heating process after coating.
Abstract:
An object is to provide a manufacturing method of a functional film where it is possible to stably manufacture a functional film which favorably exhibits the intended function and has excellent optical characteristics. The problem is solved by forming an uppermost organic layer of an organic layer with a thickness of 30 to 300 nm by using a coating material containing a surfactant where the content is 0.01 to 10 mass % when the uppermost organic layer is formed.
Abstract:
A metal pattern forming method has: producing a first base having a pattern of lyophilic portions which have lyophilic properties with respect to a liquid containing a metal component and liquid-repellent portions which have liquid-repellent properties with respect to the liquid containing a metal component; producing a second base which holds the liquid containing a metal component; and transferring the liquid containing a metal component from the second base to the lyophilic portions of the first base by bringing the first base and the second base into contact with each other. With the metal pattern forming method, it is possible to form a metal pattern with high accuracy in which the metal is prevented from adhering to an unnecessary position on the base.
Abstract:
A method of manufacturing a formed body for an electrode includes a first step of dropping an electrode material containing an electrode active material into a gap between a pair of transport belts and introducing the electrode material between transport surfaces of the pair of transport belts; a second step of belt-transporting and pressurizing the introduced electrode material with the pair of transport belts; and a third step of transferring the electrode material after the belt transporting and the pressurization, on a deposition belt, in which a transport direction in a transport, passage through which the electrode material is transported, of the deposition belt intersects a transport direction in a transport passage, through which the electrode material is transported, of the pair of transport belts.
Abstract:
A gas barrier film includes on one surface of a transparent base material, a gas barrier layer having, combination of an inorganic layer and a base organic layer, and an overcoat layer including an organic compound and provided on a surface of the inorganic layer, which is most distant from the base material; and on a surface of the base material opposite to the surface on being provided the gas barrier layer, a hardcoat layer in which particles are dispersed in an organic compound, in which a diameter of the particles is smaller than a thickness of the overcoat layer, a pencil hardness of the hardcoat layer is equal to or higher than a pencil hardness of the overcoat layer, the pencil hardness of the overcoat layer is HB to 3H, and a difference of the pencil hardness between the overcoat layer and the hardcoat layer is within 2 grades.
Abstract:
A functional film including a substrate, a first functional layer having one or more combinations of an inorganic layer and an organic layer serving as a base substrate of the inorganic layer, formed on one surface of the substrate, a functional layer-side surface layer formed on the surface of the first functional layer, with the surface being on the side opposite to the substrate, a light diffusion layer formed on the surface of the substrate, with the surface being on the side opposite to the surface on which a first functional layer is formed, and a diffusion layer-side surface layer having a support and an adhesive layer, formed on the surface of the light diffusion layer; and a method for producing the same are provided. Thus, a functional film which has a light diffusion layer and is suitably used for a quantum dot film or the like is provided.
Abstract:
Provided is a backlight unit, including: a light source allowing light having a light emission center wavelength of λ nm to exit; and a wavelength conversion member positioned on an optical path of the light exiting from the light source, in which the wavelength conversion member includes a wavelength conversion layer containing a fluorescent material which is excited by exciting light and emits fluorescent light, and a light scattering layer containing particles having a particle size of greater than or equal to 0.1 μm in a matrix, an average refractive index n1 of the wavelength conversion layer satisfies a relationship of n1
Abstract:
A functional laminated film includes a gas barrier film; and a light-extracting layer provided on the surface of the gas barrier film, in which the gas barrier film includes a base film and a barrier laminate which is provided on the base film and includes an organic layer and an inorganic layer, the inorganic layer and the light-diffusing layer are in direct contact with each other, and the light-diffusing layer is a layer formed from a light-diffusing layer forming material including organic light-diffusing particles and a binder that contains titanium oxide fine particles, a polyfunctional acrylic monomer, and a silane coupling agent.
Abstract:
A functional film has an organic layer and an inorganic layer which are alternately formed on a support and a transport support which is stuck to a rear surface of the support through an adhesive layer and has thermal characteristics different from thermal characteristics of the support, in which an adhesive force between the adhesive layer and the support is 5 N/25 mm to 50 N/25 mm, and an adhesive force between the adhesive layer and the transport support is 0.01 N/25 mm to 1 N/25 mm. In a state where a long laminate composed of the support, the adhesive layer, and the transport support is being transported in a longitudinal direction, the organic layer and the inorganic layer are alternately formed on a front surface of the support. As a result, there is provided a low-cost functional film in which the organic layer and the inorganic layer are alternately laminated and the inorganic layer or the like is not damaged and which stably demonstrates the intended performance. Furthermore, there is provided a process for manufacturing such a functional film.