Abstract:
A gas-barrier laminate 10 of a structure in which a first inorganic barrier layer 3, a water-trapping layer 5 and a second inorganic barrier layer 9 are provided in this order on a plastic base material 1, wherein the water-trapping layer 5 is a layer in which a granular moisture-absorbing agent is dispersed in a matrix of an ionic polymer, the granular moisture-absorbing agent being capable of absorbing moisture to a degree lower than that attained by the matrix, and an organic layer 7 is provided between the water-trapping layer 5 and the second inorganic barrier layer 9, the organic layer 7 serving as an underlying layer for forming the second inorganic barrier layer. The water-trapping layer has excellent barrier property against water and is, at the same time, effectively suppressed from swelling despite it has absorbed moisture. The water-trapping layer is, further, effectively suppressed from losing its activity.
Abstract:
The present invention is directed to an electrophoretic display film which can be controlled to malfunction permanently within a period of time. It provides an elegant method to utilize an electrophoretic film for anti-counterfeit purposes. The concept involves the removal of strong barrier layer(s) from the film to allow the solvent in the electrophoretic fluid within the film to evaporate through weak barrier layer(s), and within a period of time, the performance of the display film will be significantly degraded and the film cannot be re-used.
Abstract:
The present invention is a gas barrier film laminate comprising at least two gas barrier films and a bonding layer, the at least two gas barrier films being stacked through the bonding layer, the bonding layer having a configuration in which a pressure-sensitive adhesive layer is contiguously stacked on each side of a base film A, the base film A being formed of a synthetic resin having a tensile modulus at 23°C of 3000 to 10,000 MPa. The present invention is also an electronic device member comprising the gas barrier film laminate. According to the present invention, provided are a gas barrier film laminate that exhibits an excellent gas barrier capability and excellent bendability, an electronic device member that includes the gas barrier film laminate, and an electronic device that includes the electronic device member.
Abstract:
An active matrix substrate ( 1 ) includes a source electrode ( 32 ), a drain electrode ( 33 ), and a semiconductor layer ( 31 ) of oxide semiconductor. A gate insulating layer ( 42 ) of silicon oxide is formed on the gate electrode ( 12a ); a source electrode ( 32 ), a drain electrode ( 33 ), and a semiconductor layer ( 31 ) are formed on the gate insulating layer ( 42 ); a first protection layer ( 44 ) of silicon nitride is formed on the gate insulating layer ( 42 ) without covering the semiconductor layer ( 31 ); and a second protection layer ( 46 ) of silicon oxide is formed on the semiconductor layer ( 31 ). The first protection layer ( 44 ) covers the signal line ( 14 ) and the source connection line ( 36 ).
Abstract:
In a display region of an active matrix substrate, an interlayer insulating film made of a photosensitive organic insulating film, an insulating film different from the interlayer insulating film, and a plurality of pixel electrodes formed on a surface of the interlayer insulating film are provided. In a non-display region of the active matrix substrate, a lead line extended from the display region is formed. In a formation region for a sealing member, the interlayer insulating film is removed, the insulating film is provided to cover part of the lead line, and the sealing member is formed directly on a surface of the insulating film.
Abstract:
A display includes: a display substrate including a liquid crystal layer; a driving substrate driving the display substrate; and a damp-proof layer continuously provided along a top face and side faces of the display substrate, and a top face of the driving substrate.
Abstract:
A display includes: a display substrate including a liquid crystal layer; a driving substrate driving the display substrate; and a damp-proof layer continuously provided along a top face and side faces of the display substrate, and a top face of the driving substrate.
Abstract:
A formed article comprising a gas barrier layer that is formed of a material including at least an oxygen atom, a carbon atom, and a silicon atom, the gas barrier layer including an area (A) where an oxygen atom content rate gradually decreases, and a carbon atom content rate gradually increases in a depth direction from a surface, the area (A) including a partial area (A1) and a partial area (A2), the (A1) having an oxygen atom content rate of 20 to 55%, a carbon atom content rate of 25 to 70%, and a silicon atom content rate of 5 to 20% based on the total content rate of oxygen atoms, carbon atoms, and silicon atoms, and the (A2) having an oxygen atom content rate of 1 to 15%, a carbon atom content rate of 72 to 87%, and a silicon atom content rate of 7 to 18% based on the total content rate of oxygen atoms, carbon atoms, and silicon atoms; a method of producing the same; an electronic device member; an electronic device. The formed article exhibits an excellent gas barrier capability, excellent bendability, excellent adhesion, and excellent surface flatness.