Abstract:
The present invention relates to a composition for forming a conductive pattern which is capable of forming a fine conductive pattern on a variety of polymeric resin products or resin layers by a simplified process, while imparting excellent flame retardancy to the resin products or resin layers, and a resin structure having the conductive pattern obtained using the composition. The composition for forming a conductive pattern includes: a polymer resin; a non-conductive metal compound including a first metal element and a second metal element, having a R3m or P63/mmc space group in crystal structure; and a flame retardant, wherein a metal nucleus including the first metal element, the second metal element or an ion thereof is formed from the non-conductive metal compound by the electromagnetic irradiation.
Abstract:
Provided is an electrically conductive composition that includes: an electrically conductive substance (A); and a water-soluble polymer (b) having a hydrophilic group, and a C13 or greater terminating hydrophobic group.
Abstract:
A conductive paste includes a conductive filler (A), a zwitterionic compound (B) and a thermosetting compound (C); a method of producing a conductive pattern including applying the conductive paste to obtain a coating film, drying the coating film to obtain a dried film, exposing and developing the dried film to obtain a pattern, and curing the pattern at 100 to 200° C. to obtain a conductive pattern; and an electrostatic capacitance type touch panel including as peripheral wiring the conductive pattern produced by the method of producing the conductive pattern.
Abstract:
A water-based hydrophilic coating composition is characterized in that it is obtained by adding to a liquid medium: an inorganic compound (A) with colloidal silica (a) modified with at least one or more of organoalkoxysilane compounds (b) having one or more groups selected from the group consisting of a glycidyl group, a vinyl group and an amino group; a water-soluble resin (B); and amorphous silica (C) represented by M2O.SiO2, where the mass ratio of M2O/SiO2 is from 0.05 to 0.3.
Abstract:
Provided are robust paint coating systems on metal-coated plastic substrates and processes for forming such material systems as decorative components. An organometallic adhesion promoter is applied to a metal-coated plastic substrate. The metal coating comprises chromium (Cr), nickel (Ni) or combinations thereof. The organometallic adhesion promoter comprises (i) a transition metal selected from the group consisting of: zirconium (Zr), titanium (Ti), chromium (Cr), and combinations thereof, (ii) a first ligand complexed to the transition metal comprising an organofunctional group, and (iii) a second ligand complexed to the transition metal having a hydrolysable functional group. Then, one or more organic paint precursor materials are applied thereon. The hydrolysable functional group is capable of reacting with the metal-coated substrate and the organofunctional group with at least a portion of the organic paint precursor material to form a robust polymeric paint coating having a robust bond with the metal-coated plastic substrate below.
Abstract:
The present subsurface hiding paint comprises a composite white pigment and resin, the composite white pigment including a flaky base material and a first white pigment adhering to the surface of the flaky base material, the flaky base material being configured of any of a metal, a metal-covered material and a carbon material, the first white pigment being particulate.
Abstract:
An object of the present invention is to provide a composition for forming a far-infrared radiation shielding layer which is able to form a layer having excellent far-infrared radiation shielding properties. A composition for forming a far-infrared radiation shielding layer of the present invention contains at least inorganic fine particles and a dispersant.
Abstract:
A cuprous oxide particle dispersion liquid includes: cuprous oxide particles; 20 to 100 parts by mass of a phosphate ester-based anionic surfactant per 100 parts by mass of the cuprous oxide particles; and 500 to 10000 parts by mass of an organic solvent per 100 parts by mass of the cuprous oxide particles. The cuprous oxide particles have an average primary particle diameter of 2 nm to 80 nm and have an average secondary particle diameter of 50 nm to 150 nm, the average secondary particle diameter being measured by dynamic light scattering using cumulant analysis. A coating agent composition includes the cuprous oxide particle dispersion liquid and a binder resin, wherein the cuprous oxide particles are contained in a range from 0.1 to 50 parts by mass in 100 parts by mass of a non-volatile matter content of the coating agent composition. An antibacterial/antiviral member includes a substrate and a coating film formed on the substrate and containing the coating agent composition.
Abstract:
Provided is a novel pigment that has the ability to selectively reflect infrared light. The pigment is a black pigment which comprises a (Cr,Fe)2O3 solid solution, wherein the ratio of the Cr and the Fe (molar ratio) is (90-97):(10-3), the solid solution having a non-spinel structure.
Abstract translation:提供了具有选择性地反射红外光的能力的新型颜料。 颜料是黑色颜料,其包含(Cr,Fe)2 O 3固溶体,其中Cr和Fe(摩尔比)的比率为(90-97):(10-3),固溶体具有非 - 尖晶石结构。
Abstract:
A method and a system for producing a change in a medium. The method places in a vicinity of the medium at least one energy modulation agent. The method applies an initiation energy to the medium. The initiation energy interacts with the energy modulation agent to directly or indirectly produce the change in the medium. The system includes an initiation energy source configured to apply an initiation energy to the medium to activate the energy modulation agent.