Abstract:
A pigment dispersion containing a pigment dispersing agent having a partial structure denoted by General Formula 1 described below and a pigment adsorption portion in the same molecule, a white pigment, and any one of a hydrocarbon-based solvent, a ketone-based solvent, an ester-based solvent, and an alcohol-based solvent (in General Formula 1, R1 and R2 each independently represent an alkyl group having 1 to 4 carbon atoms, an alkoxyl group having 1 to 2 carbon atoms, or a hydrogen atom, and n represents a natural number), in which a white coated film having glossiness is obtained, and a b value of the coated film after being subjected to a high temperature treatment decreases; a white decorative material and a substrate attached with a white decorative material using the pigment dispersion, a transfer material for forming a white decorative material and a touch panel using the white decorative material and a substrate attached with a white decorative material, and the transfer material for forming a white decorative material; and an information display device using the touch panel.
Abstract:
An optical element including a cell a cell, the cell including: a first substrate, at least a portion of at least one surface of the first substrate being electroconductive; a second substrate disposed so as to face the electroconductive surface of the first substrate; an electrically non-conductive oil and an electroconductive hydrophilic liquid that are provided between the electroconductive surface of the first substrate and the second substrate; and a hydrophobic insulating film that is provided at at least a portion of the electroconductive surface side of the first substrate, that contacts the oil, and that includes a crosslinked structure derived from a siloxane compound having an unsaturated double bond, the profile of an interface between the oil and the hydrophilic liquid changing according to a voltage applied across the hydrophilic liquid and the electroconductive surface of the first substrate.
Abstract:
A photosensitive transfer material including a temporary support and a transfer layer including a photosensitive layer, in which a transmittance of the photosensitive layer to light having a wavelength of 365 nm is 0.1% to 30% or a transmittance of the photosensitive layer to light having a wavelength of 405 nm is 0.05% to 30%.
Abstract:
A photosensitive transfer material including a temporary support and a transfer layer including a photosensitive layer, in which the photosensitive layer has infrared curing properties, and a transmittance of the photosensitive layer to light having a wavelength of 830 nm is 0.1% or more.
Abstract:
Provided are a pattern formation method including a step of preparing a base material which has an etching layer transparent to an exposure wavelength on each of two surfaces thereof and is transparent to the exposure wavelength, a step of forming a photosensitive resin layer, in which an optical density to the exposure wavelength is in a range of 0.50 to 2.50, on the etching layer on each of the two surfaces of the base material, a step of pattern-exposing the photosensitive resin layer, a step of developing the photosensitive resin layer to form a resist pattern on two surfaces, a step of removing the etching layer on a portion that is not coated with the resist pattern, and a step of peeling the resist pattern off, in this order, a laminate, and a method of producing a touch panel.
Abstract:
A transfer film including a temporary support and a photosensitive transparent resin layer located on the temporary support, in which the photosensitive transparent resin layer includes (A) a binder polymer, (B) a photopolymerizable compound having an ethylenic unsaturated group, (C) a photopolymerization initiator, and (D) a rosin compound can be used to form electrode protective films for electrostatic capacitance-type input devices which have a low moisture permeability and are excellent in terms of heat and moisture resistance after the supply of saline water; an electrode protective film for an electrostatic capacitance-type input device; a laminate; a method for manufacturing the laminate; and an electrostatic capacitance-type input device.
Abstract:
The composition includes a compound represented by Formula 1, a binder polymer, and a photopolymerization initiator, in Formula 1, Q1 and Q2 each independently represent a (meth)acryloyloxy group or a (meth)acryloyloxyalkyl group; and R1 represents a divalent hydrocarbon group. Q2-R1-Q1 (1)
Abstract:
A photosensitive composition includes (A) a polyurethane obtained by reacting a diol component including a compound represented by the following Formula (I) with a polyisocyanate component; and (B) a photosensitive component. In Formula (I), A represents a single bond, or a divalent linking group including an atom selected from the group consisting of a carbon atom, a hydrogen atom, and an oxygen atoms; B represents a monovalent organic group; each of R1 to R5 independently represents a hydrogen atom or an alkyl group; m represents an integer from 0 to 3; n represents an integer from 0 to 3; and m+n is not zero.
Abstract:
Provided is a laminate where malfunction is not likely to occur for use as a touch panel sensor. The laminate includes: a substrate; a first wiring pattern portion that is disposed on one surface side of the substrate and consists of a plurality of first metal wires; and a second wiring pattern portion that is disposed on another surface side of the substrate and consists of a plurality of second metal wires, in which both of the first metal wires and the second metal wires include metal and carbon atoms, and in a case where an average resistivity of the first metal wires is represented by a resistivity R1 and an average resistivity of the second metal wires is represented by a resistivity R2, the resistivity R1 and the resistivity R2 are the same value or a ratio of a higher resistivity among the resistivity R1 and the resistivity R2 to a lower resistivity among the resistivity R1 and the resistivity R2 is more than 1.00 and 1.40 or less.
Abstract:
Provided are a color conversion film including, in the following order, a support, a first color conversion layer containing an organic light-emitting material which emits, by an excitation light having a wavelength of 400 nm or more and less than 500 nm, light observed in a region having a peak wavelength of 500 nm or more and less than 580 nm, an interlayer, and a second color conversion layer containing an organic light-emitting material which emits, by at least one of the excitation light having a wavelength of 400 nm or more and less than 500 nm or the light emitted from the organic light-emitting material, light observed in a region having a peak wavelength of 580 nm or more and less than 750 nm; a method for manufacturing a color conversion film, a backlight unit, and a liquid crystal display device.