Patent classifications
C09B25/00
QUINOPHTHALONE COMPOUND
A new yellow pigment excellent in both brightness and coloring power is provided. It has been found that dimerization of a specific quinophthalone skeleton gives more selective absorption and transmittance. Furthermore, the dimerization method was also studied, and it has been found that excessive reddish tone can be suppressed by cleaving the conjugate using a methylene chain as a spacer instead of simply employing a direct bond. In addition, dispersibility has been improved by polyhalogenation and introduction of an imide structure. Furthermore, a coloring agent containing the quinophthalone compound and a coloring composition containing the coloring agent are provided.
QUINOPHTHALONE COMPOUND
It is an object of the present invention to provide a novel yellow pigment having excellent brightness and coloring power. The object is achieved by providing a quinophthalone compound represented by the following Formula (1):
##STR00001##
(in Formula (1), X.sub.1 to X.sub.16 are each independently a hydrogen atom or a halogen atom, Y is a hydrogen atom or a halogen atom, and Z is a lower alkylene group). Furthermore, a coloring agent containing a quinophthalone compound represented by Formula (1) and a coloring composition containing the coloring agent are provided.
QUINOPHTHALONE COMPOUND
It is an object of the present invention to provide a novel yellow pigment having excellent brightness and coloring power. The object is achieved by providing a quinophthalone compound represented by the following Formula (1):
##STR00001##
(in Formula (1), X.sub.1 to X.sub.16 are each independently a hydrogen atom or a halogen atom, Y is a hydrogen atom or a halogen atom, and Z is a lower alkylene group). Furthermore, a coloring agent containing a quinophthalone compound represented by Formula (1) and a coloring composition containing the coloring agent are provided.
Colorant, colored resin composition comprising the same, and color filter
The present invention relates to a colorant, a colored resin composition comprising the colorant, and a color filter prepared using the colored resin composition. A novel reddish yellow pigment may be used in combination with a green pigment and a yellow pigment in order to reduce the imbalance of the intramolecular polarization of the green pigment and/or the yellow pigment in the colorant. As a result, a color filter comprising a colored layer in which a light leakage phenomenon, caused by an electric field distortion, is reduced.
Colorant, colored resin composition comprising the same, and color filter
The present invention relates to a colorant, a colored resin composition comprising the colorant, and a color filter prepared using the colored resin composition. A novel reddish yellow pigment may be used in combination with a green pigment and a yellow pigment in order to reduce the imbalance of the intramolecular polarization of the green pigment and/or the yellow pigment in the colorant. As a result, a color filter comprising a colored layer in which a light leakage phenomenon, caused by an electric field distortion, is reduced.
Coloring composition, color filter, pattern forming method, solid-state imaging device, and image display device
Provided are a coloring composition capable of producing a film having fewer defects generated, and the like even in a case where the coloring composition is stored for a long period of time in an environment with variations in temperature, a color filter, a pattern forming method, a solid-state imaging device, and an image display device. The coloring composition includes a heterocycle-containing coloring agent such as a compound represented by Formula (1), a phthalimide compound, a solvent, and a resin. In Formula (1), R.sup.1 to R.sup.13 each independently represent a hydrogen atom or a substituent, and adjacent groups of R.sup.1 to R.sup.8 may be bonded to each other to form a ring, provided that at least one of the pairs of adjacent two groups of R.sup.1 to R.sup.8 is bonded to each other to form an aromatic ring. ##STR00001##
Coloring composition, color filter, pattern forming method, solid-state imaging device, and image display device
Provided are a coloring composition capable of producing a film having fewer defects generated, and the like even in a case where the coloring composition is stored for a long period of time in an environment with variations in temperature, a color filter, a pattern forming method, a solid-state imaging device, and an image display device. The coloring composition includes a heterocycle-containing coloring agent such as a compound represented by Formula (1), a phthalimide compound, a solvent, and a resin. In Formula (1), R.sup.1 to R.sup.13 each independently represent a hydrogen atom or a substituent, and adjacent groups of R.sup.1 to R.sup.8 may be bonded to each other to form a ring, provided that at least one of the pairs of adjacent two groups of R.sup.1 to R.sup.8 is bonded to each other to form an aromatic ring. ##STR00001##
THERMAL TRANSFER SHEET, COATING LIQUID FOR COLORANT LAYER, METHOD FOR MANUFACTURING THERMAL TRANSFER SHEET, AND IMAGE FORMING METHOD
A thermal transfer sheet which can prevent a kick and a scumming, and can form a photographic tone color image of high quality with a continuous tone image by sublimation transfer; a coating liquid for colorant layer to be used for forming the colorant layer of this thermal transfer sheet; a method for manufacturing this thermal transfer sheet; and image forming method employing this thermal transfer sheet. The problem is solved by a thermal transfer sheet (1) in which at least a colorant layer (3) is layered on a substrate sheet (2), wherein the colorant layer (3) contains a predetermined solvent, a colorant (10x) dispersible in the predetermined solvent, a dispersant, and a binder resin, and the dispersant being one or more selected from the group consisting of polyether-based dispersants, graft type polymer dispersants, acryl-based block type polymer dispersants, urethane-based polymer dispersants and azo-based dispersants.
THERMAL TRANSFER SHEET, COATING LIQUID FOR COLORANT LAYER, METHOD FOR MANUFACTURING THERMAL TRANSFER SHEET, AND IMAGE FORMING METHOD
A thermal transfer sheet which can prevent a kick and a scumming, and can form a photographic tone color image of high quality with a continuous tone image by sublimation transfer; a coating liquid for colorant layer to be used for forming the colorant layer of this thermal transfer sheet; a method for manufacturing this thermal transfer sheet; and image forming method employing this thermal transfer sheet. The problem is solved by a thermal transfer sheet (1) in which at least a colorant layer (3) is layered on a substrate sheet (2), wherein the colorant layer (3) contains a predetermined solvent, a colorant (10x) dispersible in the predetermined solvent, a dispersant, and a binder resin, and the dispersant being one or more selected from the group consisting of polyether-based dispersants, graft type polymer dispersants, acryl-based block type polymer dispersants, urethane-based polymer dispersants and azo-based dispersants.
Thermal transfer sheet, coating liquid for colorant layer, method for manufacturing thermal transfer sheet, and image forming method
The purpose of the present invention is to provide a thermal transfer sheet which can prevent a kick and a scumming, and can form a photographic tone color image of high quality with a continuous tone image by sublimation transfer, while expanding the range of choices for colorants to be included in a colorant layer; a coating liquid for colorant layer to be used for forming the colorant layer of this thermal transfer sheet; a method for manufacturing this thermal transfer sheet; and image forming method employing this thermal transfer sheet. The problem is solved by a thermal transfer sheet (1) in which at least a colorant layer (3) is layered on a substrate sheet (2), wherein the colorant layer (3) contains a predetermined solvent, a colorant (10x) dispersible in the predetermined solvent, a dispersant, and a binder resin, and the dispersant being one or more selected from the group consisting of polyether-based dispersants, graft type polymer dispersants, acryl-based block type polymer dispersants, urethane-based polymer dispersants and azo-based dispersants.