Abstract:
PROBLEM TO BE SOLVED: To improve the manufacture efficiency upon developing a photosensitive colored film. SOLUTION: When a photosensitive colored film is developed, a developer solution prepared by adding a nonionic surfactant to an alkali aqueous solution is used. In the developer solution, the nonionic surfactant has a structure including a polypropylene glycol group as a hydrophobic group and a polyethylene glycol group as a hydrophilic group, in which the number average molecular weight of the hydrophobic groups is 1200±275 and the proportion of the hydrophilic groups is 20 to 85 wt.%. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a photosensitive resin composition for color filters capable of forming a pattern and comprising C.I. Solvent Orange 56 and a photoacid generator. SOLUTION: The colored photosensitive composition comprises C.I. Solvent Orange 56, the photoacid generator, a curing agent, an alkali-soluble resin and a solvent, wherein the C.I. Solvent Orange 56 comprises C.I. Solvent Orange 56 obtained by acid treatment of crude C.I. Solvent Orange 56. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a new colored photosensitive resin composition for forming a color filter to be provided in an image sensor, which has high exposure sensitivity. SOLUTION: The colored photosensitive resin composition for forming the color filter contains a dyestuff, a photoacid generator, a compound shown by formula (I), a compound shown by formula (II), an alkali-soluble resin and a solvent. A mass fraction of the content of the compound shown by formula (I) to the total amount of the content of the compound shown by formula (I) and that of the compound shown by formula (II) is 0.0-99.9 mass% and the photoacid generator is at least one compound selected from the group consisting of formula (IV) to formula (VII). COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a chemical sensor, a biomolecule detection device, and a biomolecule detection method that enable biomolecules to be detected with high precision.SOLUTION: A chemical sensor of the present invention comprises a substrate, an optical layer, and an intermediate layer. The substrate has a plurality of photodiodes formed thereon and arranged in a flat shape. The optical layer is laminated on the substrate, and waveguides for guiding incident light to each of the photodiodes are formed in the optical layer. The intermediate layer is laminated on the optical layer, and a probe retaining region capable of retaining a probe material is formed for each waveguide in the intermediate layer.
Abstract:
PROBLEM TO BE SOLVED: To provide a solid state imaging device of a compound eye system, capable of imaging at high picture quality, regardless of a use environment.SOLUTION: A solid state imaging device comprises photoelectric converting portions 21 two-dimensionally arranged; on-chip lenses 27a two-dimensionally arranged above the photoelectric converting portion 21 while respectively corresponding to the photoelectric converting portions 21; a micro-lenses 10a disposed so as to oppose to each of a plurality of the on-chip lenses 27a; and transparent material layers put between the on-chip lenses 27a and the micro lenses 10a, and made of a first intermediate layer 29 and a second intermediate layer 31.
Abstract:
PROBLEM TO BE SOLVED: To provide a solid state imaging device, a manufacturing method thereof and electronic equipment increasing the accuracy of working a color filter and suppressing mixture of colors. SOLUTION: The solid state imaging device includes an imaging region where a plurality of pixels, each having a photoelectric conversion element, are arrayed and the color filter constituted of a first color filter component 2G; a second color filter component 2R, surrounded by the first color filter component 2G and formed by self-alignment; and a third color filter component 2B surrounded by the first color filter component 2G and formed through self-alignment. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a colored photosensitive resin composition with which a color filter array with improved spectroscopic characteristics is formed. SOLUTION: The colored photosensitive resin composition contains a compound represented by a formula (I) or its salt. In the formula (I), R 10 , R 11 , R 13 , and R 14 mutually independently represent a hydrogen atom or an alkyl group. R 12 represents a sulfonic acid group, a carboxylic acid group, their esters, or an amide represented by formula (1):-SO 2 NHR 15 . X - represents BF 4 - , PF 6 - , Y - , YO 4 - (in the previous two formulas, Y is a halogen atom) or a dye having a sulfonic acid group. COPYRIGHT: (C)2009,JPO&INPIT
Abstract translation:要解决的问题:提供形成具有改进的光谱特性的滤色器阵列的着色光敏树脂组合物。 u>解决方案:着色感光性树脂组合物含有式(I)表示的化合物或其盐。 在式(I)中,R 10,R 11,R 13和R 14彼此独立地表示 氢原子或烷基。 R 12表示磺酸基,羧酸基,它们的酯或由式(1)表示的酰胺:-SO 2 S SB> NHR 15 SP>。 X - SP>表示BF 4 SB> - SP>,PF 6 SB> - 在前两个式中,Y是卤素原子)或具有磺酸基的染料。 版权所有(C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a colored photosensitive resin composition in which a change in exposure energy is small at the time of forming a pattern by projection exposure. SOLUTION: The colored photosensitive resin composition comprises a dye, a photoacid generator, a curing agent, an alkali-soluble resin, a solvent and a compound represented by the formula (I), wherein R 1 -R 3 each independently represent H, a 1-6C linear alkyl group, a 3-12C branched alkyl group, a 3-6C cycloalkyl group or a 6-12C aryl group, and provided that at least one of R 1 -R 3 represents a group other than H, and H on the 1-6C linear alkyl group, H on the 3-12C branched alkyl group, H on the cycloalkyl group and H on the aryl group may be substituted by hydroxyl groups. COPYRIGHT: (C)2008,JPO&INPIT