Abstract:
Provided are a laminate including a base material and a resin pattern, in which, in a case where, based on a depth direction analysis of the resin pattern performed along a direction from the resin pattern toward the base material, an intensity of at least one component selected from the group consisting of a sodium ion and a potassium ion, which is detected on a surface of the resin pattern, is defined as 100%, a depth of presence of the at least one component selected from the group consisting of a sodium ion and a potassium ion in the resin pattern is 0.3 μm to 3.0 μm, the depth of presence being defined by a distance from the surface of the resin pattern to a point where the intensity of the at least one component selected from the group consisting of a sodium ion and a potassium ion first reaches 90%; and a manufacturing method of the laminate.
Abstract:
Provided are a composition containing a binder polymer, a polymerizable compound, a polymer (X), and a solvent, in which the polymer (X) includes predetermined constitutional units, a transfer film, a manufacturing method of a laminate, a cured film, and a device.
Abstract:
A photosensitive resin composition includes a binder polymer having an I/O value of 0.5 to 0.7, an ethylenically unsaturated compound, and a photopolymerization initiator, in which the ethylenically unsaturated compound includes a compound A represented by Formula (1). In Formula (1), Q1 and Q2 each independently represent a (meth)acryloyloxy group, and R1 represents a divalent linking group having a chain structure. Q2-R1-Q1 Formula (1)
Abstract:
Provided are a transfer film for a silver conductive material protective film, including a temporary support, and a photosensitive layer which is provided on the temporary support, and includes at least one selected from the group consisting of a binder polymer and a polymerizable compound, and a photopolymerization initiator, in which an amount of free chloride ions included in the photosensitive layer is 20 ppm or less, and a mass content average value of C log P values in all the binder polymer and polymerizable compound included in the photosensitive layer is 2.75 or more; a manufacturing method of a patterned silver conductive material using the transfer film for a silver conductive material protective film; a laminate including, in the following order, a substrate, a silver conductive material, and a cured resin layer, in which an amount of free chloride ions included in the cured resin layer is 20 ppm or less, and a C log P value of a cured resin component included in the cured resin layer is 2.75 or more; and a touch panel.
Abstract:
Provided are a transfer film which includes a temporary support, a first curable transparent resin layer, and a second transparent resin layer disposed in direct contact with the first curable transparent resin layer in this order, satisfies Expression 1 and Expression 2A: n1
Abstract:
A polyester film has excellent resistance to hydrolysis, excellent heat resistance in high temperatures and low humidity, and mechanical strength. The polyester film satisfies a stress heat resistant coefficient f(125)≧3 and a wet thermo retention (=100×S(120)/S(0)) of 30% or more. f(125) is a value obtained by substituting t=125° C. in an approximation represented by f(t); t represents a temperature (° C.) at thermo processing; f(t) represents a stress heat resistant coefficient f at the thermo temperature t and represents an approximation to a straight line obtained by linear approximation by a least squares method of values plotted from a relationship between the thermo temperature t and a logarithm (log T(t)) of time T at which a rupture stress is 50% when t is 150° C., 160° C., 170° C., or 180° C.; T(t) is a time (hr) at which the maximum stress in a tensile test after thermo processing at t° C. and 0% RH is 50% of the maximum stress in a tensile test before thermo processing; S(120) is breaking elongation (%) after aging for 100 hours at 120° C. and 100% RH, and S(0) represents a breaking elongation (%) before aging.
Abstract:
A color conversion film including 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, 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, and an interlayer mixing layer between the first color conversion layer and the second color conversion layer, in which the first color conversion layer and the second color conversion layer are mixed together.
Abstract:
A photosensitive resin composition contains a compound A which has a heterocyclic structure having at least one atom of an oxygen atom, a nitrogen atom, or a sulfur atom in a ring structure, and has at least one functional group selected from the group consisting of —SH, —OH, —COOH, —NH2, and —CONH2, an alkali-soluble binder polymer, an ethylenically unsaturated compound, and a photopolymerization initiator.
Abstract:
An aspect of the present invention relates to a magnetic recording medium comprising a nonmagnetic layer comprising a nonmagnetic powder and a binder and a magnetic layer comprising a ferromagnetic powder and a binder in this order on a nonmagnetic support, wherein the magnetic layer and/or nonmagnetic layer comprises organic acid A and organic acid B below, with an acid strength pKa(A) of organic acid A and an acid strength pKa(B) of organic acid B satisfying a relation of pKa(A)
Abstract:
A solar cell backsheet, which is arranged in contact with a sealing material of a cell-side substrate on which a photovoltaic element is sealed with the sealing material, the solar cell backsheet including a polyester film base material and at least one polymer layer arranged thereon, wherein the polyester film base material has a carboxyl group content of from 1 eq/ton to 15 eq/ton, a minute endothermic peak temperature Tmeta (° C.) of 220° C. or lower as determined by differential scanning calorimetry, and an average elongation retention ratio of 10% or more as determined after being left to stand for 72 hours under conditions of a temperature of 125° C. and a relative humidity of 100% RH; and the at least one polymer layer comprises at least a fluorocarbon-based polymer, has a crosslinked structure derived from at least one crosslinking agent selected from carbodiimide-based compounds and oxazoline-based compounds and is formed by coating.