Abstract:
A conductive pattern forming ink for forming a conductive pattern on a substrate by a droplet discharge method includes: metal particles; an aqueous dispersion medium in which the metal particles are dispersed; mannitol; and a polyglycerol compound having a polyglycerol skeleton. In the ink, H shown in the following formula (I) is 0.10 to 0.65; H = OH ( A ) Mw ( A ) X ( A ) + OH ( B ) Mw ( B ) X ( B ) Formula ( I ) where OH(A) represents an average number of hydroxyl groups in one molecule of the polyglycerol compound, Mw(A) represents a weight-average molecular weight of the polyglycerol compound, X(A) represents a content of the polyglycerol compound in the conductive pattern forming ink in weight percent; and OH(B) represents a number of hydroxyl groups in one molecule of the mannitol, Mw(B) represents a molecular weight of the mannitol, and X(B) represents a content of the mannitol in the conductive pattern forming ink in weight percent.
Abstract:
A microencapsulated particulate metal material includes metal particles, a polymer coating the metal particles, and an ionic group provided on a surface of the polymer.
Abstract:
An electroluminescence device includes a tubular first electrode, an electroluminescence layer formed on an inner surface of the first electrode, and a second electrode formed on an inner surface of the electroluminescence layer. A method for manufacturing the electroluminescence device includes: conducting an electroluminescence layer forming liquid into and out of the inside of the first electrode, thereby forming a liquid film of the electroluminescence layer forming liquid on the inner surface of the first electrode; and forming the electroluminescence layer by drying the liquid film of the electroluminescence layer forming liquid formed on the inner surface of the first electrode. This facilitates modification of the size or the shape of the electroluminescence device and thus improves productivity for manufacturing the electroluminescence device.
Abstract:
A method for manufacturing a color filter having a picture element part surrounded by a partition wall and provided in the plural number on a substrate including a step of forming the partition wall that has a lyophobic quality on the substrate, step of forming a lyophilic layer in the picture element part by applying a lyophilic liquid that develops the lyophobic quality to a substantially whole surface of the substrate on which the partition wall is formed all at once and a step of applying a droplet of colorant to the picture element part in which the lyophilic layer is formed.
Abstract:
To provide a pattern forming method enabling a thin film to be patterned with high precision by easy and low cost techniques. A thin film 2 is provided on a base material 1 containing a sublimable dyestuff, light is irradiated to the base material 1, and heat generated by the light irradiation sublimates the sublimable dyestuff in a desired region, thereby removing the thin film 2 corresponding to an irradiation region where the light is irradiated to thereby pattern this thin film 2.
Abstract:
A method for forming a thin-film transistor includes forming a source electrode and a drain electrode on an element-side substrate, forming a semiconductor layer in contact with the source electrode and the drain electrode, forming a gate insulating layer overlaid on the semiconductor layer, and forming a gate electrode overlaid on the gate insulating layer, wherein the semiconductor layer is formed over a laser process at the step of forming the semiconductor layer in contact with the source electrode and the drain electrode.
Abstract:
A patterned substrate has a laminated pattern having laminating patterns formed by drying droplets containing a pattern formation material. A lower layer pattern contains a surfactant that is lyophilic with respect to droplets that form an upper layer pattern.
Abstract:
A color filter forming method, includes: forming a bank on a substrate; making the substrate and part or all of the bank lyophilic; and coating a liquid repellent on part or all of an upper surface of the bank.
Abstract:
A method of forming a conductive pattern includes a step of forming a bank on a substrate and a step of applying a lyophobic agent to a part or whole of an upper face of the bank.
Abstract:
An organic electroluminescent device, comprising an anode; a cathode; and a light-emitting functional portion sandwiched between the anode and the cathode, the light-emitting functional portion including a light-emitting part, an electron injection and transport part, and a hole injection and transport part; the anode being in contact with a titanium oxide particle thin layer.