Abstract:
Provided are a transfer film for forming a decorative layer on at least one surface of a film sensor, the transfer film including a temporary support and a coloring composition layer, the coloring composition layer including a black pigment or a white pigment, in which a content a (% by mass) of the black pigment or the white pigment in the coloring composition layer and a film thickness b (μm) of the coloring composition layer satisfy Expression 1; and a transfer film including a temporary support and a coloring composition layer, the coloring composition layer including a black pigment or a white pigment, in which a content a (% by mass) of the black pigment or the white pigment in the coloring composition layer and a film thickness b (μm) of the coloring composition layer satisfy Expression 1, 80>a×b>10 Expression 1.
Abstract:
A lithographic printing plate precursor in a positive-type with an infrared-sensitivity, having a support and an image recording layer provided on the support, the support having a hydrophilic surface, the recording layer having a particular resin, an amphoteric surfactant and/or an anionic surfactant, and an infrared absorbing agent, wherein the particular resin being at least one of resins selected from the group consisting of a polyurethane resin, a poly(vinyl acetal) resin, and maleimide resin A.
Abstract:
An object of the present invention is to provide a laminate excellent in a shape stability of a conductive pattern and excellent in transparency even after heating. There is provided a laminate including a base material and a conductive pattern containing a metal nanobody and a resin, where a total light transmittance of the base material is 75% or more, and a glass transition temperature of the base material is 120° C. or higher, and provided an electronic device including the laminate. The glass transition temperature of the base material is preferably 200° C. or higher, and the coefficient of thermal expansion of the base material at 100° C. to 200° C. is preferably 10×10−6 (/K) or more and 50×10−6 (/K) or less.
Abstract:
Provided are a decorative film including a base film, and a metal-containing layer which contains tabular metal particles on one surface of the base film; and a decorative molded body.
Abstract:
The composition contains a compound represented by Formula 1, a binder polymer, a photopolymerization initiator, and a monomer having a carboxy group, in which the content of the compound represented by Formula 1 is 5% by mass or more and less than 50% by mass with respect to the total mass of monomer components, and in Formula 1, Q1 and Q2 each represent a (meth)acryloyloxy group, and R1 represents a divalent linking group having a chain-like structure. Q2-R1-Q1 (1)
Abstract:
A coloring composition for decoration includes a compound having at least a structure represented by Formula 1 in a molecule, a compound having at least a structure represented by Formula 2 in a molecule, and a pigment. In the formulae, Ra represents a hydrogen atom, a halogen atom, an alkoxy group, an alkyl group, an alkenyl group other than a vinyl group, an aryl group, or an aralkyl group, and Rb represents a halogen atom, an alkoxy group, an alkyl group, an alkenyl group, an aryl group, or an aralkyl group.
Abstract:
An object of the present invention is to provide a substrate attached with a decorative material in which a problem such as the disconnection of a conductive layer is solved, and a manufacturing method thereof, a touch panel, and an information display device. According to the present invention, there is provided a substrate attached with a decorative material, including: a substrate; a white colored layer; a light shielding layer; and a conductive layer, in this order, in which the substrate attached with a decorative material includes a light transmitting region transmitting light in a thickness direction, a decorative material configured of the white colored layer and the light shielding layer is laminated on the substrate to surround the light transmitting region and includes a tilt portion which is formed such that a thickness of the decorative material becomes thin towards the inside of the light transmitting region on an inner edge of the decorative material, and a tilt angle between a surface of the tilt portion and a surface of the substrate is 10 degrees to 60 degrees.
Abstract:
Provided is a photosensitive composition including: a polymer (P) which includes a structural unit derived from a vinylbenzene derivative, a structural unit including a radical polymerizable group, and a structural unit including at least one kind of functional group selected from the group consisting of a primary hydroxyl group and an amino group, and in which the content of the structural unit derived from the vinylbenzene derivative is equal to or greater than 30% by mol; and a radical polymerization initiator.
Abstract:
Provided are a photosensitive resin composition including a binder having a weight-average molecular weight of 4,000 to 25,000, a polymerization initiator having a content greater than 0% by mass and smaller than 9% by mass with respect to a total amount of solid contents of the composition, a polymerizable monomer, and a pigment, a transfer film, a decorative pattern, a touch panel, and a manufacturing method of a pattern.
Abstract:
A transfer film has a temporary support and a photosensitive transparent resin layer, in which the photosensitive transparent resin layer includes a binder polymer, a photopolymerizable compound having an ethylenic unsaturated group, a photopolymerization initiator, and a compound capable of reacting with acids by heating, at least one of the following condition 1 or the following condition 2 is satisfied, and the transfer film is used for an electrode protective film in an electrostatic capacitance-type input device; condition 1: the compound capable of reacting with acids by heating has a hydrophilic group in a molecule; and condition 2: the photosensitive transparent resin layer further includes a compound having an ethylene oxide chain or a propylene oxide chain.