Abstract:
This invention provides a thermally curable resin copolymer (A), composed mainly of an ethylenically unsaturated monomer (a-1), which produces an acid via decomposition at 150°C or more, an ethylenically unsaturated monomer (a-2) containing an epoxy group copolymerizable with the ethylenically unsaturated monomer (a-1), and an ethylenically unsaturated monomer (a-3) having a reactive silyl group; a thermally curable resin composition including the thermally curable resin copolymer; a cured film formed from the composition; and a liquid crystal display including the cured film. The thermally curable resin composition has extended storage stability and can be formed into the cured film having good adhesion to a substrate.
Abstract:
The present application relates to a substrate for an organic electronic device, an organic electronic apparatus, and a manufacturing method and illumination of the apparatus or the substrate. A substrate for an organic electronic device according to the present application may block the inflow of foreign substances such as humidity and oxygen, thereby improving durability and forming an organic electronic apparatus having excellent optical extraction efficiency. When the organic electronic apparatus includes an encapsulation structure, the substrate may stably adhere to the encapsulation structure, and the surface solidity of a terminal part outside the organic electronic apparatus may also be maintained at a proper level.
Abstract:
The present invention relates to a substrate for an organic electrode device, a manufacturing method thereof, and an organic electronic device. An exemplary substrate of the invention, if an organic light emitting element is formed on an upper part of the substrate, can obtain luminance with high emission and uniformity by efficiently controlling the surface resistance of an electrode even when the device is configured into larger sizes.