专利摘要:
In the water-based ink for inkjet recording containing at least a colorant, water and resin insoluble in water as a main component and taking the form of an emulsion, General formula (1) below: Quinophthalone compound represented by the following general formula (2): It is characterized by containing at least one yellow colorant selected from the group consisting of pyridone azo compounds represented by. The ink is an inkjet recording ink excellent in light resistance and storage stability, and can form a high quality image without bleeding, and the recording image obtained as inkjet recording ink has excellent water resistance.
公开号:KR20010099658A
申请号:KR1020017004004
申请日:2000-07-26
公开日:2001-11-09
发明作者:마츠자키요리아키;오쿠마타다시;오이류;코고오사무
申请人:사토 아키오;미쯔이카가쿠 가부시기가이샤;
IPC主号:
专利说明:

YELLOW COMPOUND AND WATER-BASED INK-JET RECORDING INK CONTAINING THE COMPOUND}
[2] Water-based inks have been commonly used as ink for recording in the inkjet recording method. Aqueous ink basically consists of a coloring agent, water, and an organic solvent, and contains water as a main component in consideration of odor, safety to a human body, and the environment.
[3] As the colorant, water-soluble dyes such as acid dyes, basic dyes, reactive dyes and direct dyes are generally used.
[4] The following various properties are required for the inkjet recording ink and the colorant.
[5] In other words,
[6] (1) Ink properties such as viscosity, surface tension, non-conductivity, density and pH should be appropriate.
[7] (2) Long term storage stability of ink is good.
[8] (3) The dissolution stability of the dissolving component is high, so that the nozzle will not be clogged.
[9] (4) Rapid drying of recording materials should be good.
[10] (5) Recorded images should be clear and have good light resistance and water resistance.
[11] However, colorants and inks that satisfy these properties have not yet been provided.
[12] In particular, in a conventional water-based ink, a water-soluble dye is used, and when water spills on the recording image, the dye elutes and the recording image bleeds or disappears. Therefore, there were many problems in water resistance.
[13] At present, various researches are focused on improving water resistance.
[14] For example, a method of adding an organic solvent or a resin to an ink using a pigment or an oil-soluble dye or a water-based ink using a water-soluble dye as a colorant has been studied. However, when a pigment is used, dispersion stability, such as clogging of a nozzle, is bad, and storage stability deteriorates. In addition, when an oil-soluble dye is used, an organic solvent is used, which causes problems of environmental hygiene such as odor, and ink bleeding becomes remarkable, thereby degrading image quality. In addition, even when an ink containing an additive is used, the viscosity of the ink is increased, so that the storage stability is deteriorated, the clogging of the nozzle is caused, and the ink is not easily ejected.
[15] In recent years, Japanese Patent Application Laid-Open No. 1994-340835 discloses an ink using an aqueous dispersion containing a polyester resin colored with a dye or a pigment as a dispersed phase. However, pigments still have the above problems. In addition, since dyes have poor compatibility with resins, there are problems such as deposits in the ink, poor storage stability, and clogging of the nozzles.
[16] As described above, the characteristics of the ink used in the inkjet recording method are particularly affected by the characteristics inherent to the colorant. Therefore, the discovery of colorants that meet these conditions is of great importance.
[17] An object of the present invention is to provide a colorant which is particularly excellent in solubility, water resistance, light resistance and compatibility with resins in organic solvents.
[18] Another object of the present invention is to provide a yellow water-based ink for ink jet lock using the colorant which is excellent in water resistance, light resistance and storage stability and is most suitable for an ink jet recording method.
[1] The present invention relates to an ink jet recording ink suitable for an ink jet recording method, and more particularly, to a yellow colorant (i.e., a dye) for an aqueous ink for ink jet recording and an ink jet recording ink using the same.
[19] MEANS TO SOLVE THE PROBLEM As a result of earnestly researching in order to achieve the said objective, the present inventors discovered that the compound represented by following General formula (1) and the compound represented by following General formula (2) are coloring agents corresponding to the said objective, The invention was completed.
[20] That is, the present invention is as follows.
[21] (1) A water-based ink for ink jet recording containing a colorant, water and resin insoluble in water as at least a main component and taking the form of an emulsion,
[22] The coloring agent,
[23] General formula (1) below:
[24]
[25] [Wherein, R 1 to R 3 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, -CONR 4 R 5 or -COOR 6 (wherein R 4 to R 6 are each independently a hydrogen atom, unsubstituted or substituted Is an alkyl group, or an unsubstituted or substituted aryl group, and all of R 1 to R 3 are not hydrogen atoms at the same time.
[26] Formula (2)
[27]
[28] Wherein R 7 to R 11 are each independently a hydrogen atom, a halogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, an unsubstituted or substituted alkoxy group, an unsubstituted or substituted aryl group, an unsubstituted or substituted aryl Oxy group, hydroxyl group, -NR 14 R 15 , wherein R 14 and R 15 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, or an aryl group, -COX 1 , wherein X 1 is unsubstituted or substituted An alkoxy group, unsubstituted or substituted aryloxy group, or -NR 16 R 17 , wherein R 16 and R 17 each independently represent a hydrogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, or an unsubstituted or substituted group Aryl group), -COO (CH 2 ) n -COX 2 , -OCOX 3 or -NHCOX 4 (wherein X 2 to X 4 are each independently unsubstituted or substituted alkyl, aralkyl, unsubstituted or substituted Is an aryl group, unsubstituted or substituted alkoxy group, or unsubstituted or substituted aryloxy group, n is an integer of 1 to 3),
[29] R 12 is an unsubstituted or substituted alkyl group,
[30] R 13 is at least one yellow colorant selected from the group consisting of pyridone azo compounds represented by unsubstituted or substituted alkyl, aralkyl or unsubstituted or substituted aryl groups. Water-based ink.
[31] (2) The yellow colorant according to the above (1), wherein the yellow colorant has the following general formula (1)
[32]
[33] [Wherein, R 1 to R 3 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, -CONR 4 R 5 or -COOR 6 (wherein R 4 to R 6 are each independently a hydrogen atom, unsubstituted or substituted Alkyl group, or an unsubstituted or substituted aryl group, and R 1 to R 3 are not all hydrogen atoms at the same time.
[34] (3) In the above (2), R 2 and R 3 in the general formula (1) is -CONR 4 R 5 or -COOR 6 (wherein R 4 to R 6 are each independently a hydrogen atom, unsubstituted) Or a substituted alkyl group or an unsubstituted or substituted aryl group).
[35] (4) In the above (2), R 1 in the general formula (1) is a hydrogen atom or an unsubstituted or substituted alkyl group having 5 or less carbon atoms, one of R 2 or R 3 is a hydrogen atom, and the other One side is -CONR 4 R 5 or -COOR 6 (wherein R 4 to R 6 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, or an unsubstituted or substituted aryl group) Water-based ink.
[36] (5) In the above (2), R 1 in the general formula (1) is a hydrogen atom or an unsubstituted or substituted alkyl group having 5 or less carbon atoms, R 2 is a hydrogen atom, and R 3 is -CONR 4 Aqueous ink for inkjet recording, wherein R 5 (wherein R 4 and R 5 are each independently an unsubstituted or substituted alkyl group having 6 or more carbon atoms or an unsubstituted or substituted aryl group).
[37] (6) The general formula (2) according to the above (1), wherein the yellow colorant is:
[38]
[39] Wherein R 7 to R 11 are each independently a hydrogen atom, a halogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, an unsubstituted or substituted alkoxy group, an unsubstituted or substituted aryl group, an unsubstituted or substituted aryl Oxy group, hydroxyl group, -NR 14 R 15 (wherein R 14 and R 15 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, or an aralkyl group), -COX 1 where X 1 is unsubstituted or substituted An alkoxy group, unsubstituted or substituted aryloxy group, or -NR 16 R 17 , wherein R 16 and R 17 each independently represent a hydrogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, or an unsubstituted or substituted group Aryl group), -COO (CH 2 ) n -COX 2 , -OCOX 3 or -NHCOX 4 (wherein X 2 to X 4 are each independently unsubstituted or substituted alkyl, aralkyl, unsubstituted or substituted Is an aryl group, an unsubstituted or substituted alkoxy group, or an unsubstituted or substituted aryloxy group , n is an integer of 1 to 3),
[40] R 12 is an unsubstituted or substituted alkyl group,
[41] R 13 is a pyridone azo compound represented by unsubstituted or substituted alkyl group, aralkyl group, or unsubstituted or substituted aryl group}.
[42] (7) The inkjet recording water system according to the above (6), wherein at least one of R 7 to R 9 in the general formula (2) is -COX 1 , and R 13 is an unsubstituted or substituted alkyl group. ink.
[43] (8) The above-mentioned (7), wherein the unsubstituted or substituted alkyl group represented by R 13 in the general formula (2) has a linear or branched alkyl group having 8 or more carbon atoms, or-(CH 2 ) n COR having 8 or more carbon atoms. 18 wherein R 18 is an unsubstituted or substituted alkoxy group, an unsubstituted or substituted aryl group, or -NR 19 R 20 , wherein R 19 and R 20 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group , Aralkyl group or unsubstituted or substituted aryl group, and n is an integer of 1 or 2.].
[44] (9) the following general formula (1):
[45]
[46] [Wherein, R 1 is a linear, branched or cyclic alkyl group having 2 or more carbon atoms,
[47] R 2 is a hydrogen atom,
[48] R 3 is -CONR 4 R 5 , wherein R 4 and R 5 are each independently a linear, branched or cyclic alkyl group having 6 or more carbon atoms.
[49] (10) In the above (9), in the general formula (1), R 1 is an isopropyl group, R 2 is a hydrogen atom, R 3 is -CONR 4 R 5 (wherein R 4 and R And each independently represents a linear or branched alkyl group having 8 or more carbon atoms.
[50] (11) the following general formula (2):
[51]
[52] Wherein R 7 to R 11 are each independently a hydrogen atom, a halogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, an unsubstituted or substituted alkoxy group, an unsubstituted or substituted aryl group, an unsubstituted or substituted aryl Oxy group, hydroxyl group, -NR 14 R 15 , wherein R 14 and R 15 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, or an aralkyl group, -COX 1 wherein X 1 is unsubstituted or Substituted alkoxy groups, unsubstituted or substituted aryloxy groups, or -NR 16 R 17 , wherein R 16 and R 17 each independently represent a hydrogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, or an unsubstituted or substituted group Is an aryl group), -COO (CH 2 ) n -COX 2 , -OCOX 3 or -NHCOX 4 (wherein X 2 to X 4 are each independently unsubstituted or substituted alkyl, aralkyl, unsubstituted or Substituted aryl group, unsubstituted or substituted alkoxy group, or unsubstituted or substituted aryloxy group , N is an integer of 1 to 3),
[53] R 12 is an unsubstituted or substituted alkyl group,
[54] R 13 is an unsubstituted or substituted alkyl group, an aralkyl group, or an unsubstituted or substituted aryl group}.
[55] (12) The pyridone according to the above (11), wherein in General Formula (2), at least one of R 7 to R 11 is -COX 1 , and R 13 is an unsubstituted or substituted alkyl group. Azo compounds.
[56] (13) The pyridone azo compound according to the above (12), wherein in formula (2), at least one of R 7 to R 11 is -CONR 16 R 17 .
[57] (14) the following general formula (1):
[58]
[59] [Wherein, R 1 to R 3 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, -CONR 4 R 5 or -COOR 6 (wherein R 4 to R 6 are each independently a hydrogen atom, unsubstituted or substituted Is an alkyl group, or an unsubstituted or substituted aryl group, and all of R 1 to R 3 are not hydrogen atoms at the same time.
[60] Formula (2)
[61]
[62] Wherein R 7 to R 11 are each independently a hydrogen atom, a halogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, an unsubstituted or substituted alkoxy group, an unsubstituted or substituted aryl group, an unsubstituted or substituted aryl Oxy group, hydroxyl group, -NR 14 R 15 , wherein R 14 and R 15 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, or an unsubstituted or substituted aryl group, -COX 1 [where X 1 Is an unsubstituted or substituted alkoxy group, an unsubstituted or substituted aryloxy group, or -NR 16 R 17 (wherein R 16 and R 17 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, or Unsubstituted or substituted aryl group], -COO (CH 2 ) n -COX 2 , -OCOX 3 or -NHCOX 4 (wherein X 2 to X 4 are each independently an unsubstituted or substituted alkyl, aralkyl group) , Unsubstituted or substituted aryl group, unsubstituted or substituted alkoxy group, or unsubstituted or substituted And an aryloxy group, n is an integer of 1 to 3),
[63] R 12 is an unsubstituted or substituted alkyl group,
[64] R 13 is colored by at least one yellow colorant selected from the group consisting of pyridone azo compounds represented by unsubstituted or substituted alkyl, aralkyl or unsubstituted or substituted aryl. Resin fine particles.
[65] (15) A dispersion liquid obtained by dispersing the resin fine particles of the item (14) in an aqueous medium.
[66] The yellow colorant of the present invention is particularly suitable for water-based inks for ink jet recording because it is particularly excellent in water resistance and excellent in light resistance and compatibility with resins. In addition, the water-based ink for ink jet recording of the present invention produced using the colorant is excellent in light resistance and storage stability. In particular, when used as an inkjet recording water-based ink, the yellow colorant insoluble in the water of the present invention, and an ink composition containing water and a resin at least as a main component, and taking an emulsion form, form a high quality image without bleeding. It is possible to do Moreover, the water resistance of recording images is also excellent.
[67] Accordingly, the present invention provides a water-based ink that provides a high-quality image, a yellow-based colorant excellent in light resistance and storage stability applicable to an inkjet recording ink, a resin fine particle using the colorant, and a dispersion in which the fine particles are dispersed in water. It is possible.
[68] Best Mode for Carrying Out the Invention
[69] The present invention relates to a water-based ink for ink jet recording which contains at least a colorant, water and resin insoluble in water as a main component and takes the form of an emulsion, and more specifically,
[70] 1) The insoluble colorant is at least one yellow compound selected from the group consisting of a compound represented by the general formula (1) and a compound represented by the general formula (2).
[71] 2) a resin fine particle colored with at least one yellow colorant selected from the group consisting of a compound represented by the general formula (1) and a compound represented by the general formula (2),
[72] 3) a dispersion in which the resin fine particles are dispersed in an aqueous medium and
[73] 4) The present invention relates to an aqueous ink ink for ink jet recording in the form of an emulsion in which the fine resin particles are emulsified and dispersed.
[74] The colorant of the present invention, that is, a dye preferably used in the inkjet recording water-based ink of the present invention is a quinophthalone compound represented by the general formula (1) and a pyridone azo compound represented by the general formula (2). At least one yellow-based colorant selected from the group consisting of hereinafter also referred to as "colorants" or "colorants for inkjet recording".
[75] In the quinophthalone compound represented by the general formula (1), each of R 1 to R 3 is independently a hydrogen atom, an unsubstituted or substituted alkyl group, -CONR 4 R 5 or -COOR 6 (wherein R 4 To R 6 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, or an unsubstituted or substituted aryl group), and all of R 1 to R 3 are not hydrogen atoms at the same time.
[76] In general formula (1), an unsubstituted or substituted alkyl group is not specifically limited, For example,
[77] Methyl group, ethyl group, n-propyl group, isopropyl group, n-butyl group, isobutyl group, tert-butyl group, sec-butyl group, n-pentyl group, isopentyl group, tert-pentyl group, sec-pentyl group Cyclopentyl, n-hexyl, 1-methylpentyl, 2-methylpentyl, 3-methylpentyl, 4-methylpentyl, 1,1-dimethylbutyl, 1,2-dimethylbutyl, 1,3-dimethylbutyl group, 2,3-dimethylbutyl group, 1,1,2-trimethylpropyl group, 1,2,2-trimethylpropyl group, 1-ethylbutyl group, 2-ethylbutyl group, 1- Ethyl-2-methylpropyl group, cyclohexyl group, methylcyclopentyl group, n-heptyl group, 1-methylhexyl group, 2-methylhexyl group, 3-methylhexyl group, 4-methylhexyl group, 5-methylhex Actual group, 1,1-dimethylpentyl group, 1,2-dimethylpentyl group, 1,3-dimethylpentyl group, 1,4-dimethylpentyl group, 2,2-dimethylpentyl group, 2,3-dimethylpentyl group, 2,4-dimethylpentyl group, 3,3-dimethylpentyl group, 3,4-dimethylpentyl group, 1-ethylpentyl group, 2-ethylpentyl group, 3-ethylpentyl group, 1,1,2-trimethylbutyl Group, 1,1,3-trimethylbutyl , 1,2,3-trimethylbutyl group, 1,2,2-trimethylbutyl group, 1,3,3-trimethylbutyl group, 2,3,3-trimethylbutyl group, 1-ethyl-1-methylbutyl group , 1-ethyl-2-methylbutyl group, 1-ethyl-3-methylbutyl group, 2-ethyl-1-methylbutyl group, 2-ethyl-3-methylbutyl group, 1-n-propylbutyl group, 1 -Iso-propylbutyl group, 1-iso-propyl-2-methylpropyl group, methylcyclohexyl group, n-octyl group, 1-methylheptyl group, 2-methylheptyl group, 3-methylheptyl group, 4-methyl Heptyl group, 5-methylheptyl group, 6-methylheptyl group, 1,1-dimethylhexyl group, 1,2-dimethylhexyl group, 1,3-dimethylhexyl group, 1,4-dimethylhexyl group, 1,5 -Dimethylhexyl group, 2,2-dimethylhexyl group, 2,3-dimethylhexyl group, 2,4-dimethylhexyl group, 2,5-dimethylhexyl group, 3,3-dimethylhexyl group, 3,4-dimethyl Hexyl group, 3,5-dimethylhexyl group, 4,4-dimethylhexyl group, 4,5-dimethylhexyl group, 1-ethylhexyl group, 2-ethylhexyl group, 3-ethylhexyl group, 4-ethylhexyl group , 1-n-propylpentyl group, 2-n-propylpentyl group, 1-iso-propylpentyl group, 2-di Small propylpentyl group, 1-ethyl-1-methylpentyl group, 1-ethyl-2-methylpentyl group, 1-ethyl-3-methylpentyl group, 1-ethyl-4-methylpentyl group, 2-ethyl- 1-methylpentyl group, 2-ethyl-2-methylpentyl group, 2-ethyl-3-methylpentyl group, 2-ethyl-4-methylpentyl group, 3-ethyl-1-methylpentyl group, 3-ethyl- 2-methylpentyl group, 3-ethyl-3-methylpentyl group, 3-ethyl-4-methylpentyl group, 1,1,2-trimethylpentyl group, 1,1,3-trimethylpentyl group, 1,1, 4-trimethylpentyl group, 1,2,2-trimethylpentyl group, 1,2,3-trimethylpentyl group, 1,2,4-trimethylpentyl group, 1,3,4-trimethylpentyl group, 2,2, 3-trimethylpentyl group, 2,2,4-trimethylpentyl group, 2,3,4-trimethylpentyl group, 1,3,3-trimethylpentyl group, 2,3,3-trimethylpentyl group, 3,3, 4-trimethylpentyl group, 1,4,4-trimethylpentyl group, 2,4,4-trimethylpentyl group, 3,4,4-trimethylpentyl group, 1-n-butylbutyl group, 1-iso-butylbutyl Group, 1-sec-butylbutyl group, 1-tert-butylbutyl group, 2-tert-butylbutyl group, 1-n-propyl-1-methylbutyl group, 1-n-propyl-2-methyl moiety Methyl group, 1-n-propyl-3-methylbutyl group, 1-iso-propyl-1-methylbutyl group, 1-iso-propyl-2-methylbutyl group, 1-iso-propyl-3-methylbutyl group, 1,1-diethylbutyl group, 1,2-diethylbutyl group, 1-ethyl-1,2-dimethylbutyl group, 1-ethyl-1,3-dimethylbutyl group, 1-ethyl-2,3- Dimethylbutyl group, 2-ethyl-1,1-dimethylbutyl group, 2-ethyl-1,2-dimethylbutyl group, 2-ethyl-1,3-dimethylbutyl group, 2-ethyl-2,3-dimethylbutyl Group, 1,2-dimethylcyclohexyl group, 1,3-dimethylcyclohexyl group, 1,4-dimethylcyclohexyl group, ethylcyclohexyl group, n-nonyl group, 3,5,5-trimethylhexyl group, n Linear, branched or cyclic alkyl groups such as decyl groups;
[78] Fluoromethyl group, trifluoromethyl group, chloromethyl group, dichloromethyl group, trichloromethyl group, bromomethyl group, dibromomethyl group, tribromomethyl group, fluoroethyl group, chloroethyl group, bromoethyl group, trifluoroethyl group, penta Linear, branched or cyclic haloalkyl groups substituted with one or more halogen atoms such as a fluoroethyl group, tetrachloroethyl group and hexafluoroisopropyl group;
[79] Methoxymethyl group, ethoxymethyl group, propoxymethyl group, butoxymethyl group, pentoxymethyl group, hexyloxymethyl group, cyclohexyloxymethyl group, methoxyethyl group, ethoxyethyl group, propoxyethyl group, butoxyethyl group, pentoxyethyl group, hexyl Oxyethyl group, cyclohexyloxyethyl group, methoxyethyl group, methoxyethoxyethyl group, methoxypropyl group, ethoxypropyl group, propoxypropyl group, butoxypropyl group, pentoxypropyl group, hexyloxypropyl group, cyclohexyl Linear, branched or cyclic alkoxyalkyl groups such as propyl group and methoxyethoxypropyl group;
[80] Methylthiomethyl group, ethylthiomethyl group, propylthiomethyl group, butylthiomethyl group, pentylthiomethyl group, hexylthiomethyl group, cyclohexylthiomethyl group, methylthioethyl group, ethylthioethyl group, propylthioethyl group, butylthioethyl group, pentylthioethyl group, hexyl Thioethyl group, cyclohexyl thioethyl group, methoxyethyl thioethyl group, methylthiopropyl group, ethylthiopropyl group, propylthiopropyl group. Linear, branched or cycloalkylthioalkyl groups such as butylthiopropyl group, pentylthiopropyl group, hexylthiopropyl group, cyclohexylthiopropyl group and methoxyethylthiopropyl group;
[81] N-methylaminomethyl group, N, N-dimethylaminomethyl group, N-ethylaminomethyl group, N, N-diethylaminomethyl group, N-propylaminomethyl group, N, N-dipropylaminomethyl group, N-methyl-N- Ethylaminoethyl group, N-methylaminoethyl group, N, N-dimethylaminoethyl group, N-ethylaminoethyl group, N, N-diethylaminoethyl group, N-propylaminoethyl group, N, N-dipropylaminoethyl group, N- Methyl-N-ethylaminoethyl group, N-methylaminopropyl group, N, N-dimethylaminopropyl group, N-ethylaminopropyl group, N, N-diethylaminopropyl group, N-propylaminopropyl group, N, Alkylaminoalkyl groups or dialkylaminoalkyl groups such as N-dipropylaminopropyl group and N-ethyl-N-butylaminopropyl group;
[82] Hydroxyalkyl groups such as hydroxyethyl group;
[83] Alkylcarbonyloxyalkyl groups such as methylcarbonyloxyethyl group;
[84] Alkylcarbonylalkyl groups such as methoxycarbonylmethyl group, ethoxycarbonylmethyl group, propoxycarbonylmethyl group, butoxycarbonylmethyl group, pentyloxycarbonylmethyl group and hexyloxycarbonylmethyl group;
[85] Aryloxycarbonylalkyl groups such as phenoxycarbonylmethyl group;
[86] Aralkyl groups, such as a benzyl group and a phenethyl group, etc. are mentioned.
[87] In general formula (1), an unsubstituted or substituted aryl group is not specifically limited, For example, a phenyl group, a naphthyl group, anthranyl group, 2-methylphenyl group, 3-methylphenyl group, 4-methylphenyl group, 2, 3-dimethylphenyl group, 2,4-dimethylphenyl group, 2,5-dimethylphenyl group, 2,6-dimethylphenyl group, 3,4-dimethylphenyl group, 3,5-dimethylphenyl group, 3,6-dimethylphenyl group, 2,3 , 4-trimethylphenyl group, 2,3,5-trimethylphenyl group, 2,3,6-trimethylphenyl group, 2,4,5-trimethylphenyl group, 2,4,6-trimethylphenyl group, 3,4,5-trimethylphenyl group , 2-ethylphenyl group, propylphenyl group, butylphenyl group, hexylphenyl group, cyclohexylphenyl group, octylphenyl group, 2-methyl-1-naphthyl group, 3-methyl-1-naphthyl group, 4-methyl-1-naphthyl group, 5 -Methyl-1-naphthyl group, 6-methyl-1-naphthyl group, 7-methyl-1-naphthyl group, 8-methyl-1-naphthyl group, 1-methyl-2-naphthyl group, 3-methyl-2- Naphthyl group, 4-methyl-2-naphthyl group, 5-methyl-2-naphthyl group, 6-methyl-2-naphthyl group, 7-methyl-2-naphthyl group, 8-methyl Aryl groups substituted with linear, branched or cyclic alkyl groups such as a 2-naphthyl group and 2-ethyl-1-naphthyl group;
[88] 3-methoxyphenyl group, 4-methoxyphenyl group, 2,3-dimethoxyphenyl group, 2,4-dimethoxyphenyl group, 2,5-dimethoxyphenyl group, 2,6-dimethoxyphenyl group, 3,4-dimethoxy Phenyl group, 3,5-dimethoxyphenyl group, 3,6-dimethoxyphenyl group, 2,3,4-trimethoxyphenyl group, 2,3,5-trimethoxyphenyl group, 2,3,6-trimethoxyphenyl group , 2,4,5-trimethoxyphenyl group, 2,4,6-trimethoxyphenyl group, 3,4,5-trimethoxyphenyl group, 2-ethoxyphenyl group, propoxyphenyl group, butoxyphenyl group, hexyloxy Phenyl group, cyclohexyloxyphenyl group, octyloxyphenyl group, 2-methoxy-1-naphthyl group, 3-methoxy-1-naphthyl group, 4-methoxy-1-naphthyl group, 5-methoxy-1-naphthyl group , 6-methoxy-1-naphthyl group, 7-methoxy-1-naphthyl group, 8-methoxy-1-naphthyl group, 1-methoxy-2-naphthyl group, 3-methoxy-2-naphthyl group , 4-methoxy-2-naphthyl group, 5-methoxy-2-naphthyl group, 6-methoxy-2-naphthyl group, 7-methoxy-2-naphthyl group, 8-methoxy-2-naphthyl group Linear such as 2-ethoxy-1-naphthyl group Aryl groups substituted with a branched or cyclic alkoxy group;
[89] As halogen atoms such as chlorophenyl group, dichlorophenyl group, trichlorophenyl group, bromophenyl group, dibromophenyl group, iodophenyl group, fluorophenyl group, difluorophenyl group, trifluorophenyl group, tetrafluorophenyl group and pentafluorophenyl group Substituted aryl groups;
[90] N, N-dimethylaminophenyl group, N, N-diethylaminophenyl group, N-phenyl-N-methylaminophenyl group, N-triyl-N-ethylaminophenyl group, N-chlorophenyl-N-cyclohexylaminophenyl group, N-monoamino substituted aryl groups or N, N-diamino substituted aryl groups, such as N, N- ditriylaminophenyl group;
[91] Arylthioaryl groups, such as a methylthiophenyl group, an ethylthiophenyl group, a methylthionaphthyl group, and a phenylthiophenyl group, etc. are mentioned.
[92] Among these groups, especially as substituents of R 1 to R 3 , a hydrogen atom, n-propyl group, iso-propyl group, n-butyl group, iso-butyl group, n-hexyl group, n-octyl group, 2-ethyl Hexyl group, methoxyethyl group, ethoxyethyl group, butoxyethyl group, and methoxyethoxyethyl group are preferable.
[93] The quinophthalone compound which is preferably used for the inkjet recording water-based ink of the present invention means that in formula (1), R 1 is a hydrogen atom or an unsubstituted or substituted alkyl group having 5 or less carbon atoms, and R 2 and R 3 Is one hydrogen atom, the other is -CONR 4 R 5 or -COOR 6 wherein R 4 to R 6 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, or an unsubstituted or substituted aryl group More preferably, R 1 is a hydrogen atom or an unsubstituted or substituted alkyl group having 5 or less carbon atoms, R 2 is a hydrogen atom, and R 3 is -CONR 4 R 5 (wherein R 4 and R 5 are Each independently an unsubstituted or substituted alkyl group having 6 or more carbon atoms, or an unsubstituted or substituted aryl group).
[94] These compounds are particularly useful as colorants in inkjet recording inks.
[95] Specific examples of the quinophthalone compound represented by the general formula (1) are shown in Table 1 below. However, in this invention, it is not limited to the coloring agent shown in Table 1.
[96] number General formula (1) R 1 R 2 R 3One -C 3 H 7 (i) H -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 ] 22 -C 3 H 7 (i) H -CON (C 8 H 17 ) 23 -C 3 H 7 (i) H -COO (C 2 H 4 O) 4 H 4 -C 6 H 12 (cyclo) H -COOC 8 H 175 -C 4 H 9 (n) H -COOC 2 H 4 OC 2 H 4 OC 4 H 96 -C 4 H 9 (i) H -CON (C 6 H 13 ) 27 -C 8 H 17 (n) H -COOCH 2 CH (C 2 H 5 ) C 4 H 98 -C 12 H 25 (n) H -CONHC 18 H 379 H -CON (C 8 H 17 ) 2 H 10 H -COOC 12 H 25 H 11 -C 3 H 7 (i) -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 ] 2 H 12 H -CON (C 4 H 9 ) 2 -CON (C 4 H 9 ) 213 H -COOC 18 H 37 -COOC 18 H 3714 H -C 4 H 9 (n) -CON (C 4 H 9 ) 215 H -C 4 H 9 (n) -COOC 2 H 4 OC 2 H 4 OC 4 H 916 -CH 3 -COOCH 2 CH (C 2 H 5 ) C 4 H 9 -COOC 2 H 4 OC 2 H 4 OC 2 H 517 H -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 ] 2 -COOC 18 H 3718 H -CON (CH 3 ) CH 2 CH (C 2 H 5 ) C 4 H 9 -CON (CH 3 ) CH 2 CH (C 2 H 5 ) C 4 H 919 H -CON (C 6 H 13 ) 2 -CON (C 6 H 13 ) 220 -CH 3 -COOC 18 H 37 -COOC 18 H 3721 -CH 3 -CON (C 6 H 13 ) 2 -CON (C 6 H 13 ) 222 H -C 3 H 7 (i) -CON (CH 2 CH 2 OOCCH 3 ) 223 -C 2 H 5 -COOC 12 H 25 H 24 -C 4 H 9 (n) H -COOC 6 H 4 -mN (C 2 H 5 ) 225 -C 4 H 9 (n) H -COOC 6 H 4 -mN (C 4 H 9 ) 226 -C 4 H 9 (n) H -COOC 6 H 4 -pN (C 2 H 5 ) 227 H H -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 ] 228 -C 3 H 7 (i) H -CON [C 8 H 17 (i)] 229 -C 3 H 7 (i) H -CON [C 12 H 25 (n)] 230 -C 3 H 7 (i) H -CON [C 10 H 21 (n)] 231 -C 3 H 7 (i) H -CON [C 6 H 13 (n)] 232 -C 3 H 7 (i) H -CON [CH 2 CH (CH 3 ) C 5 H 11 ] 233 -C 3 H 7 (i) H -CON [CH (CH 3 ) C 6 H 13 ] 234 -C 2 H 5 H -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 ] 235 -C 6 H 13 (n) H -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 ] 2
[97] In addition, in the pyridone azo compound represented by General formula (2),
[98] R 7 to R 11 are each independently a hydrogen atom, a halogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, an unsubstituted or substituted alkoxy group, an unsubstituted or substituted aryl group, an unsubstituted or substituted aryloxy group, Hydroxyl group, -NR 14 R 15 , wherein R 14 and R 15 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, or an unsubstituted or substituted aralkyl group, and -COX 1 wherein X 1 is free of A substituted or substituted alkoxy group, an unsubstituted or substituted aryloxy group, or -NR 16 R 17 , wherein R 16 and R 17 each independently represent a hydrogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, or an unsubstituted group Or a substituted aryl group], -COO (CH 2 ) n -COX 2 , -OCOX 3 or -NHCOX 4 (wherein X 2 to X 4 are each independently an unsubstituted or substituted alkyl group, an aralkyl group, Substituted or substituted aryl group, unsubstituted or substituted alkoxy group, or unsubstituted or substituted And a rilok time, n is an integer of 1 to 3),
[99] R 12 is an unsubstituted or substituted alkyl group,
[100] R 13 is an unsubstituted or substituted alkyl group, an aralkyl group, or an unsubstituted or substituted aryl group.
[101] In the said General formula (2), an unsubstituted or substituted alkyl group is not specifically limited, For example, a methyl group, an ethyl group, n-propyl group, iso-propyl group, n-butyl group, iso-butyl group, tert-butyl group, n-pentyl group, iso-pentyl group, n-hexyl group, iso-hexyl group, 2-ethylhexyl group, 3,5,5-trimethylhexyl group, n-heptyl group, n-octyl group linear, branched or cyclic alkyl groups such as tert-octyl group, n-nonyl group and iso-nonyl group;
[102] Cycloalkyl groups such as cyclopentyl group and cyclohexyl group;
[103] Halogenoalkyl groups such as trifluoromethyl and chloroethyl groups
[104] Cyanoalkyl groups such as cyanoethyl group;
[105] Alkoxyalkyl groups such as methoxymethyl group, ethoxymethyl group, methoxyethyl group, ethoxyethyl group, n-propoxyethyl group, iso-propoxyethyl group, n-butoxyethyl group, iso-butoxyethyl group, tert-butoxyethyl group, etc. Can be mentioned.
[106] In said general formula (2), an aralkyl group is not specifically limited, For example, aralkyl groups, such as a benzyl group and a phenyl group, are mentioned.
[107] In the said General formula (2), an unsubstituted or substituted alkoxy group is not specifically limited, For example, a methoxy group, an ethoxy group, n-propoxy group, iso-propoxy group, n-butoxy group, iso -Butoxy group, tert-butoxy group, n-pentyloxy group, iso-pentyloxy group, n-hexyloxy group, iso-hexyloxy group, 2-ethylhexyloxy group, 3,5,5-trimethylhexyloxy group linear, branched or cyclic alkoxy groups such as n-heptyloxy group, n-octyloxy group and n-nonyloxy group;
[108] Cycloalkyl groups such as cyclopentyloxy group and cyclohexyloxy group;
[109] Methoxymethoxy group, ethoxymethoxy group, ethoxyethoxy group, n-propoxymethoxy group, iso-propoxymethoxy group, n-propoxyethoxy group, iso-propoxyethoxy group, n-butoxy Ethoxy group, iso-butoxyethoxy group, tert-butoxyethoxy group, n-pentyloxyethoxy group, iso-pentyloxyethoxy group, n-hexyloxyethoxy group, iso-hexyloxyethoxy Alkoxy, such as time period, 2-ethylhexyloxyethoxy group, 3,5,5-trimethylhexyloxyethoxy group, n-heptyloxyethoxy group, n-octyloxyethoxy group, n-nonyloxyethoxy group An alkoxy group;
[110] Aralkyloxy groups, such as a benzyloxy group, etc. are mentioned.
[111] Moreover, in the said General formula (2), an unsubstituted or substituted aryl group is not specifically limited, For example, a phenyl group, toluyl group, xylyl group, naphthyl group, chlorophenyl group, bromophenyl group, fluorophenyl group And trifluorophenyl groups.
[112] In addition, in the said General formula (2), unsubstituted or substituted aryloxy group is not specifically limited, For example, a phenoxy group, methyl phenoxy group, dimethyl phenoxy group, methoxy phenoxy group, chlorophenoxy group, bro Morphenoxy group, fluorophenoxy group, trifluorophenoxy group, a naphthyloxy group, etc. are mentioned.
[113] In particular, the pyridone azo compound preferably used in the inkjet recording water-based ink of the present invention is, in general formula (2), at least one of R 7 to R 9 is -CONR 16 R 17 having 17 or more carbon atoms, and R 13 A linear or branched alkyl group having 8 or more carbon atoms or-(CH 2 ) n COOR 18 having 8 or more carbon atoms.
[114] More preferably, R 12 is a linear or branched alkyl group having 4 or more carbon atoms, and R 13 is a linear or branched alkyl group having 10 or more carbon atoms.
[115] Even more preferably, R 13 is a linear or branched alkyl group having 14 or more carbon atoms.
[116] Although the specific example of the pyridone azo compound represented by the said General formula (2) is shown in following Table 2 (namely, Table 2 (a)-Table 2 (j)), the compound used in this invention is these compounds. It is not limited to.
[117] Color number General formula (2) R 7 R 8 R 9 R 10 R 11 R 12 R 1336 H H -C 8 H 17 (n) H H -CH 3 -C 8 H 17 (n) 37 H H -C 4 H 9 (n) H H -CH 3 -C 9 H 19 (i) 38 H H -C 4 H 9 (i) H H -CH 3 -C 8 H 17 (n) 39 H H -C 4 H 9 (i) H H -CH 3 -ph 40 H H -C 6 H 13 (n) H H -CH 3 -CH 3- ph 41 H H Cyclohexyl H H -CH 3 Cyclohexyl 42 H H -OC 8 H 17 (n) H H -CH 3 -C 8 H 17 (n) 43 H H -OC 2 H 5 H H -CH 3 -C 10 H 21 (n) 44 H H Cyclohexyloxy H H -CH 3 -C 10 H 21 (n) 45 H H -COOC 2 H 4 COOC 4 H 9 (n) H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 46 H H -COOCH 2 COOC 4 H 9 (i) H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 47 H H -COOCH 2 COOC 5 H 11 (i) H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 48 H H -COOCH 2 COOC 6 H 13 (i) H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 49 H H -COOCH 2 COOC 8 H 17 (i) H H -CH 3 -C 8 H 17 (n) 50 H H -COOCH 2 COOC 2 H 5 H H -CH 3 -C 8 H 17 (n) 51 H H -COOC 4 H 9 (n) H H -CH 3 -C 8 H 17 (n) 52 H H -COOC 4 H 9 (i) H H -CH 3 -C 8 H 17 (n)
[118] Color number General formula (2) R 7 R 8 R 9 R 10 R 11 R 12 R 1353 H H -COOC 5 H 11 (i) H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 54 H H -COOC 6 H 13 (i) H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 55 H H -COOC 8 H 17 (i) H H -CH 3 -CH 2 CH 2 OCH (CH 3 ) 256 H H -COOCH 2 CH (C 2 H 5 ) C 4 H 9 (n) H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 57 H H -COOCH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9 (n) H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 58 H H -COOCH 2 CH 2 CH (CH 3 ) CH 2 C (CH 3 ) 3 H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 59 H H -COOCH 2- ph H H -CH 3 -C 10 H 21 (n) 60 H H -OCOCH 2 CH (C 2 H 5 ) C 4 H 9 (n) H H -CH 3 -C 10 H 21 (n) 61 H H -OCOCH 2 CH 2 CH (CH 3 ) CH 2 C (CH 3 ) 3 H H -CH 3 -C 10 H 21 (n) 62 H H -OCOC 4 H 9 (i) H H -CH 3 -C 10 H 21 (n) 63 H H -OCOC 8 H 17 (n) H H -CH 3 -C 10 H 21 (n) 64 H H -CONHCH 2 CH (C 2 H 5 ) C 4 H 9 (n) H H -CH 3 -C 12 H 25 (n) 65 H H -CONHC 8 H 17 (n) H H -CH 3 -C 12 H 25 (n) 66 H H -CONHCH 2 CH 2 CH (CH 3 ) CH 2 C (CH 3 ) 3 H H -CH 3 -C 12 H 25 (n) 67 H H -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 68 H H -CON [C 4 H 9 (n)] 2 H H -CH 3 -C 12 H 25 (n) 69 H H -CON [C 4 H 9 (i)] 2 H H -CH 3 -C 12 H 25 (n)
[119] Color number General formula (2) R 7 R 8 R 9 R 10 R 11 R 12 R 1370 H H -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H -CH 3 -C 8 H 17 (n) 71 H H -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 72 H H -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H -C 2 H 5 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 73 H H -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H -CH 3 -CH 2 -ph 74 H H -CON [C 8 H 17 (n)] 2 H H -CH 3 -CH 2 CH 2 CH 2 OCH (CH 3 ) 275 H H H H H -CH 3 -C 8 H 17 (n) 76 H -CF 3 H H H -CH 3 -C 9 H 19 (i) 77 H -CF 3 F H H -CH 3 -C 9 H 19 (n) 78 H -OC 4 H 9 (i) -C 2 H 5 H H -CH 3 -C 8 H 17 (n) 79 H -C 2 H 5 -OCH 3 H H -CH 3 -C 10 H 21 (n) 80 H -OCH 3 H H H -CH 3 -C 10 H 21 (n) 81 -C 2 H 5 H H H H -CH 3 -C 10 H 21 (n) 82 H -OCOCH 2 CH (C 2 H 5 ) -C 4 H 9 (n) H H H -CH 3 -C 8 H 17 (n) 83 H -OCOC 2 H 4 (CH 3 ) CH 2 C- (CH 3 ) 3 H H H -CH 3 -CH 2 CH 2 OCH (CH 3 ) 284 H -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H -CH 3 -C 8 H 17 (n) 85 H -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 86 -C 4 H 9 (i) H H H H -CH 3 -C 8 H 17 (n)
[120] Color number General formula (2) R 7 R 8 R 9 R 10 R 11 R 12 R 1387 -OC 4 H 9 (i) H H H H -CH 3 -C 8 H 17 (n) 88 -COOCH 2 COOC 8 H 17 (n) H H H H -CH 3 -C 8 H 17 (n) 89 -COOC 5 H 11 (i) H H H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 90 -OCOCH 2 CH (C 2 H 5 ) -C 4 H 9 (n) H H H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 91 -OCOC 2 H 4 CH (CH 3 ) CH 2 -C (CH 3 ) 3 H H H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 92 -CONHCH 2 CH (C 2 H 5 ) -C 4 H 9 (n) H H H H -CH 3 -C 8 H 17 (n) 93 -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H H -CH 3 -C 8 H 17 (n) 94 -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 95 -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H H -CH 3 -CH 2 CH 2 OCH (CH 3 ) 296 -C 3 H 7 (i) H H H -C 3 H 7 (i) -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 97 -CH 3 H H H -C 3 H 7 (i) -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 98 -C 4 H 9 (t) H H -C 4 H 9 (t) H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 99 -C 3 H 7 (i) H H H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 100 H -C 3 H 7 (i) H H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 101 H Cyclohexyl H H H -CH 3 -C 8 H 17 (n) 102 H -OC 8 H 17 (n) H H H -CH 3 -C 8 H 17 (n) 103 H -COOCH 2 COOC 4 H 9 (i) H H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n)
[121] Color number General formula (2) R 7 R 8 R 9 R 10 R 11 R 12 R 13104 H -COOC 4 H 9 (i) H H H -CH 3 -C 8 H 17 (n) 105 H -COOCH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9 (n) H H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 106 H -OCOC 8 H 17 (n) H H H -CH 3 -C 10 H 21 (n) 107 H -CONHCH 2 CH (C 2 H 5 ) C 4 H 9 (n) H H H -CH 3 -C 12 H 25 (n) 108 H -CONHC 8 H 17 (n) H H H -CH 3 -C 12 H 25 (n) 109 H -CON [C 4 H 9 (i)] 2 H H H -CH 3 -C 12 H 25 (n) 110 H -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H -CH 3 -CH 2 CH (C 2 H 5 ) C 4 H 9 (n) 111 H -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H -CH 3 -CH 2- ph 112 H -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H -CH 3 -CH 2 CH 2 CH 2 OCH (CH 3 ) 2113 H -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H -CH 3 -C 13 H 27 (n) 114 H -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H -CH 3 -C 14 H 29 (n) 115 H -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H -CH 3 -C 16 H 33 (n) 116 H -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H -CH 3 -C 18 H 37 (n) 117 H -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H -C 8 H 7 (n) -C 8 H 17 (n) 118 H -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H -C 4 H 9 (n) -C 8 H 17 (n) 119 H -CON [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H -C 4 H 9 (n) -C 14 H 29 (n) 120 H -CON [C 14 H 29 (n)] 2 H H H -CH 3 -C 8 H 17 (n)
[122] Color number General formula (2) R 7 R 8 R 9 R 10 R 11 R 12 R 13121 -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H H -CH 3 -C 13 H 27 (n) 122 -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H H -CH 3 -C 14 H 29 (n) 123 -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H H -CH 3 -C 16 H 33 (n) 124 -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H H -C 3 H 7 (n) -C 8 H 17 (n) 125 -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H H -C 4 H 9 (n) -C 8 H 17 (n) 126 -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H H -C 4 H 9 (n) -C 12 H 25 (n) 127 -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H H -C 4 H 9 (n) -C 14 H 29 (n) 128 H H -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H -C 3 H 7 (n) -C 8 H 17 (n) 129 H H -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H -C 4 H 9 (n) -C 8 H 17 (n) 130 H H -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H -C 6 H 13 (n) -C 8 H 17 (n) 131 H -CON- [C 14 H 29 (n)] 2 -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H -C 4 H 9 (n) -C 8 H 17 (n) 132 H -CON- [C 14 H 29 (n)] 2 -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H -CH 3 -C 14 H 29 (n) 133 H H -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H -CH 3 -C 13 H 27 (n) 134 H H -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H -CH 3 -C 14 H 29 (n) 135 H H -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H -CH 3 -C 16 H 33 (n) 136 -CON- [CH 2 CH (C 2 H 5 ) C 4 H 9 (n)] 2 H H H H -C 6 H 13 (n) -C 8 H 17 (n) 137 H H -COOCH 2 CH (C 2 H 5 ) -C 4 H 9 (n) H H -C 4 H 9 (n) -C 8 H 17 (n)
[123] Colorant Number Formula (2) R 7 R 8 R 9 R 10 R 11 R 12 R 13138 H H -C 8 H 17 (n) H H -CH 3 -CH 2 COOC 6 H 13 (n) 139 H H -C 4 H 9 (n) H H -CH 3 -CH 2 COOC 8 H 17 (n) 140 H H -C 4 H 9 (i) H H -CH 3 -CH 2 COOC 8 H 17 (n) 141 H H -C 4 H 9 (t) H H -CH 3 -CH 2 COOC 8 H 17 (n) 142 H H -C 6 H 13 (n) H H -CH 3 -CH 2 COOC 8 H 17 (n) 143 H H Cyclohexyl H H -CH 3 -CH 2 COOC 6 H 11 (cyclo) 144 H H -OC 8 H 17 (n) H H -CH 3 -CH 2 COOC 10 H 21 (n) 145 H H Cyclohexyloxy H H -CH 3 -CH 2 COOC 10 H 21 (n) 146 H H -COOCH 2 COOC 4 H 9 (i) H H -CH 3 -CH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9147 H H -COOCH 2 COOC 5 H 11 (i) H H -CH 3 -CH 2 COOCH 2 -ph 148 H H -COOCH 2 COOC 6 H 13 (n) H H -CH 3 -CH 2 CONHC 8 H 17 (n) 149 H H -COOCH 2 COOC 8 H 17 (n) H H -CH 3 -CH 2 COOC 8 H 17 (n) 150 H H -COOCH 2 COOC 2 H 5 H H -CH 3 -CH 2 CON [CH 2 CH (C 2 H 5 ) C 4 H 9 ] 2151 H H -COOC 4 H 9 (i) H H -CH 3 -CH 2 COOC 8 H 17 (n) 152 H H -COOC 5 H 11 (i) H H -CH 3 -CH 2 CO- (3-methylphenoxy) 153 H H -COOC 6 H 13 (n) H H -CH 3 -CH 2 CO- (4- (t-butyl) phenoxy) 154 H H -COOC 8 H 17 (n) H H -CH 3 -CH 2 CO- (2,5-dimethylphenoxy)
[124] Colorant Number Formula (2) R 7 R 8 R 9 R 10 R 11 R 12 R 13155 H H -COOCH 2 CH (C 2 H 5 ) C 4 H 9 H H -CH 3 -C 2 H 4 COOC 4 H 9 (i) 156 H H -COOCH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9 H H -CH 3 -CH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9157 H H -COOC 2 H 4 CH (CH 3 ) CH 2 C (CH 3 ) 3 H H -CH 3 -CH 2 COOC 8 H 17 (n) 158 H H -COOCH 2 -ph H H -CH 3 -CH 2 COOCH 2 -ph 159 H H -OCOCH 2 CH (C 2 H 5 ) C 4 H 9 H H -CH 3 -CH 2 COOC 8 H 17 (n) 160 H H -OCOC 2 H 4 CH (CH 3 ) CH 2 C (CH 3 ) 3 H H -CH 3 -C 2 H 4 COOC 4 H 9 (i) 161 H H -OCOC 4 H 9 (i) H H -CH 3 -CH 2 COOC 8 H 17 (n) 162 H H -OCOC 8 H 17 (n) H H -CH 3 -CH 2 COOC 10 H 21 (n) 163 H H -CONHCH 2 CH (C 2 H 5 ) C 4 H 9 H H -CH 3 -CH 2 CON [CH 2 CH (C 2 H 5 ) C 4 H 9 ] 2164 H H -CONHC 8 H 17 (n) H H -CH 3 -CH 2 CONHC 8 H 17 (n) 165 H H -CONHC 2 H 4 CH (CH 3 ) CH 2 C (CH 3 ) 3 H H -CH 3 -CH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9166 -C 3 H 7 (i) H H H -C 3 H 7 (i) -CH 3 -CH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9167 -CH 3 H H H -C 3 H 7 (i) -CH 3 -CH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9168 -C 4 H 9 (t) H H -C 4 H 9 (t) H -CH 3 -CH 2 COOC 8 H 17 (n) 169 -C 3 H 7 (i) H H H H -CH 3 -CH 2 COOC 8 H 17 (n) 170 H -C 3 H 7 (i) H H H -CH 3 -CH 2 COOC 8 H 17 (n) 171 H H -CONHCH 2 CH (C 2 H 5 ) C 4 H 9 H H -CH 3 -C 2 H 4 COOCH 2 CH (C 2 H 5 ) C 4 H 9
[125] Colorant Number Formula (2) R 7 R 8 R 9 R 10 R 11 R 12 R 13172 H H -CONHCH 2 CH (C 2 H 5 ) C 4 H 9 H H -CH 3 -C 2 H 4 CON [CH 2 CH (C 2 H 5 ) C 4 H 9 ] 2173 H H -CONHCH 2 CH (C 2 H 5 ) C 4 H 9 H H -CF 3 -CH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9174 H H -CONHCH 2 CH (C 2 H 5 ) C 4 H 9 H H -C 4 H 9 (n) -CH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9175 H -CF 3 H H H -CH 3 -CH 2 COOC 6 H 13 (n) 176 H -CF 3 H H H -CH 3 -C 2 H 4 COOC 8 H 17 (n) 177 H -OC 4 H 9 (i) F H H -CH 3 -CH 2 COOC 8 H 17 (n) 178 H -C 2 H 5 -C 2 H 5 H H -CH 3 -CH 2 COOC 8 H 17 (n) 179 H -OCH 3 -OCH 3 H H -CH 3 -CH 2 COOC 8 H 17 (n) 180 -C 2 H 5 H H H -C 2 H 5 -CH 3 -C 2 H 4 CON [CH 2 CH (C 2 H 5 ) C 4 H 9 ] 2181 H -OCOCH 2 CH (C 2 H 5 ) C 4 H 9 H H H -CH 3 -CH 2 COOC 8 H 17 (n) 182 H -OCOC 2 H 4 CH (CH 3 ) CH 2 C (CH 3 ) 3 H H H -CH 3 -CH 2 COOC 10 H 21 (n) 183 H -COOCH 2 CH (C 2 H 5 ) C 4 H 9 H H H -CH 3 -CH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9184 H -COOCH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9 H H H -CF 3 -CH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9185 -C 4 H 9 (i) H H H H -CH 3 -CH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9186 -OC 4 H 9 (i) H H H H -CH 3 -CH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9187 -COOCH 2 -COOC 8 H 17 (n) H H H H -CH 3 -CH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9188 -COO-C 5 H 11 (i) H H H H -CH 3 -CH 2 COOC 8 H 17 (n)
[126] Colorant Number Formula (2) R 7 R 8 R 9 R 10 R 11 R 12 R 13189 -OCOCH 2 CH (C 2 H 5 ) C 4 H 9 H H H H -CH 3 -CH 2 COOC 8 H 17 (n) 190 -OCOC 2 H 4 CH (CH 3 ) CH 2 C (CH 3 ) 3 H H H H -CH 3 -CH 2 COOC 8 H 17 (n) 191 -COOCH 2 CH (C 2 H 5 ) C 4 H 9 H H H H -CH 3 -C 2 H 4 CON [CH 2 CH (C 2 H 5 ) C 4 H 9 ] 2192 -COOCH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9 H H H H -CH 3 -CH 2 COOCH 2 CH (C 2 H 5 ) C 4 H 9193 -CONHCH 2 CH (C 2 H 5 ) C 4 H 9 H H H H -CH 3 -CH 2 CONHCH 2 CH (C 2 H 5 ) C 4 H 9194 -COOCH 2 COOC 2 H 4 OCH (CH 3 ) 2 H H H H -CH 3 -CH 2 COOC 2 H 4 OCH (CH 3 ) 2
[127] The quinophthalone compound represented by the general formula (1) used in the inkjet recording ink of the present invention is a conventionally known method, for example, Japanese Patent Laid-Open No. 1993-39269 and Japanese Laid-Open Patent Publication. It manufactures by the method disclosed by 1995-292264 etc. For example, these compounds are the 3-hydroxy-2-methyl-4-cincronic acid derivative represented by the following general formula (3), and the phthalic anhydride derivative represented by the following general formula (4):
[128]
[129] (Wherein R 1 to R 3 are the same as described above).
[130] The reaction between the compound represented by the general formula (3) and the compound represented by the general formula (4) is nitrobenzene, sulfolane, dichlorobenzene, N-methyl-2-pyrrolidone, 1,3-dimethyl- In the presence of high boiling point solvents, such as 2-imidazolidinone, it carries out for 1 to 20 hours at 150-230 degreeC.
[131] The compound in which the R 1 to R 3 in the quinophthalone compound represented by the general formula (1) is -CONR 4 R 5 or -COOR 6 is a compound represented by the general formula (3) having the substituent and the above It can manufacture by making the compound represented by General formula (4) which has a substituent react. The said compound can also be manufactured by making the compound represented by General formula (3) which has a carboxyl group, and the compound represented by General formula (4) react, and then esterifying or amidating.
[132] Moreover, the compound whose R <1> -R <3> is an alkylthio group can be manufactured by substituting the alkylthiol directly from the compound of the said General formula (1) in presence of alkali.
[133] The compound may also be prepared by reacting a compound obtained by halogenating R 1 to R 3 in advance in the compounds of the general formulas (3) and (4), and then substituting the halogen with an alkylthiol in the presence of an alkali. It is possible. However, the method of manufacturing the compound represented by the said General formula (1) is not limited to the said method.
[134] The compound represented by the general formula (2) used in the inkjet recording ink of the present invention is, for example, aniline represented by the following general formula (5) and pyridone represented by the following general formula (6):
[135]
[136] (In formula, R <7> -R <13> is the same as the above) can be manufactured by coupling according to a conventionally well-known coupling method.
[137] Specifically, as for the compound represented by the said General formula (2), the sodium nitrate aqueous solution is added to the aniline represented by the said General formula (5) in hydrochloric acid, and the obtained diazo compound is then added to the said General formula It can obtain by adding to the pyridone represented by (6), carrying out an azo coupling reaction, and separating the product obtained by this by filtration. However, the method of manufacturing the compound represented by the said General formula (2) is not limited to the said method.
[138] The compound of the present invention is useful for various inks, especially as a yellow colorant for inkjet recording. The colorant can be used as it is. However, especially when used in the inkjet recording method, in order to prevent clogging of the injection nozzle in the recording apparatus due to impurities or inorganic substances contained in the colorant, for example, desalination by ion exchange resin or ultrafiltration or column chromatography. What is necessary is to refine | purify by chromatography.
[139] The inkjet recording ink of the present invention comprises at least one yellow colorant selected from the group consisting of a quinophthalone compound represented by the general formula (1) and a pyridone azo compound represented by the general formula (2) as a main component; , Water and resin, and if necessary, other components, for example, additives such as dispersants, emulsifiers (emulsifiers), preparations, and the like, and the ink is a colorant of the present invention. The colored resin particles are dispersed in an aqueous medium and the dispersion is emulsified to take the form of an emulsion.
[140] The ink for inkjet recording of the present invention may contain an organic solvent and an additive as necessary. The colorants represented by the general formulas (1) and (2) may be used alone or in combination, or may be used in combination with other colorants having different structures.
[141] In the inkjet recording ink of the present invention, the resin constituting the resin fine particles may be a resin having an ionic group on its surface. For example, various resins, such as a polyester resin, a vinyl polymer, a styrene resin, a styrene-acryl copolymer, a polyurethane resin, can be used.
[142] (a) Polyester resin consists of polyhydric carboxylic acid and polyhydric alcohol. The resin obtained by superposing | polymerizing 1 or more types of polyhydric carboxylic acid and 1 or more types of polyhydric alcohols is mentioned.
[143] The polycarboxylic acid is not particularly limited, and examples thereof include terephthalic acid, isophthalic acid, o-phthalic acid, 1,5-naphthalenedicarboxylic acid, 2,6-naphthalenedicarboxylic acid, dipenic acid, sulfoterephthalic acid, 5-sulfoisophthalic acid, 4 Sulfophthalic acid, 4-sulfonaphthalene-2,7-dicarboxylic acid, 5- [4-sulfophenoxy] isophthalic acid, sulfoterephthalic acid, p-oxybenzoic acid, p- (hydroxyethoxy) benzoic acid, succinic acid, adipic Aromatic polyhydric acid, aromatic oxycarboxylic acid, aliphatic acid such as acid, azelaic acid, sebacic acid, dodecanedicarboxylic acid, fumaric acid, maleic acid, itaconic acid, hexahydrophthalic acid, tetrahydrophthalic acid, trimellitic acid, trimesic acid, pyromellitic acid Dicarboxylic acid and alicyclic dicarboxylic acid are mentioned. You may use these as a metal salt, an ammonium salt, etc.
[144] The polyhydric alcohol is not particularly limited, and examples thereof include ethylene glycol, propylene glycol, 1,3-propanediol, 2,3-butanediol, 1,4-butanediol, 1,5-pentanediol, 1,6-hexanediol, Neopentyl glycol, diethylene glycol, dipropylene glycol, 2,2,4-trimethyl-1,3-pentanediol, polyethylene glycol, polypropylene glycol, polytetramethylene glycol, trimethylol ethane, triethylolpropane, glycerin, Pentaerythritol, 1,4-cyclohexanediol, 1,4-cyclohexanedimethanol, spiroglycol, tricyclodecanediol, tricyclodecanedimethanol, m-xylene glycol, o-xylene glycol, 1,4-phenyl Aliphatic polyhydric alcohol, alicyclic polyhydric alcohol, aromatic polyhydric alcohol, etc., such as len glycol, bisphenol A, and a lactone polyester polyol, are mentioned.
[145] Regarding the polyester resin obtained by polymerizing at least one polyhydric carboxylic acid and at least one polyhydric alcohol, a resin in which the polar group at the terminal of the polymer chain is blocked with a known compound capable of blocking the terminal may be used.
[146] (b) Vinyl polymer, styrene resin, and styrene-acryl copolymer are not specifically limited, For example, the thing obtained from the following polymerizable monomers is mentioned.
[147] Examples of the polymerizable monomer include styrene, o-methylstyrene, m-methylstyrene, p-methylstyrene, α-methylstyrene, p-ethylstyrene, 2,4-dimethylstyrene, p-tert-butylstyrene and p-chloro Vinyl aromatic hydrocarbons such as styrene and divinylbenzene;
[148] Methyl acrylate, ethyl acrylate, butyl acrylate, n-propyl acrylate, isopropyl acrylate, n-butyl acrylate, isobutyl acrylate, tert-butyl acrylate, n-pentyl acrylate, isopentyl acrylate Neopentyl acrylate, 3- (methyl) butyl acrylate, 2-ethylhexyl acrylate, cyclohexyl acrylate, hexyl acrylate, octyl acrylate, nonyl acrylate, decyl acrylate, undecyl acrylate, dodecyl Acrylate, phenyl acrylate, methyl methacrylate, n-propyl methacrylate, isopropyl methacrylate, n-butyl methacrylate, isobutyl methacrylate, tert-butyl methacrylate, n-pentyl methacrylate Latex, isopentyl methacrylate, neopentyl methacrylate, 3- (methyl) butyl methacrylate, 2-ethyl (Meth) acrylic acid esters such as hexyl methacrylate, hexyl methacrylate, octyl methacrylate, nonyl methacrylate, decyl methacrylate, undecyl methacrylate, and dodecyl methacrylate;
[149] Unsaturated carboxylic acids such as acrylic acid, methacrylic acid, itaconic acid and maleic acid;
[150] (Meth) acrylamide; n-substituted maleimide; Maleic anhydride; (Meth) acrylonitrile; Vinyl ketones; Vinyl acetate; Vinylidene and the like. The resin obtained by superposing | polymerizing 1 or more types of these monomers is mentioned.
[151] (c) The polyurethane resin consists of isocyanates and compounds having functional groups capable of reacting with isocyanates. The resin obtained by superposing | polymerizing 1 or more types of isocyanate and 1 or more types of said compounds is mentioned.
[152] As an example of isocyanate,
[153] Ethylene diisocyanate, trimethylene diisocyanate,
[154] Tetramethylene diisocyanate, hexamethylene diisocyanate,
[155] Octamethylene diisocyanate, nonamethylene diisocyanate,
[156] 2,2-dimethylpentane diisocyanate, 2,2,4-trimethylhexamethylene diisocyanate, decamethylene diisocyanate, butene diisocyanate,
[157] 1,3-butadiene-1,4-diisocyanate, 2,4,4-trihexamethylene diisocyanate, 1,6,11-undectriisocyanate, 1,3,6-hexamethylene triisocyanate,
[158] 1,8-diisocyanato-4-isocyanatomethyloctane,
[159] 2,5,7-trimethyl-1,8-diisocyanato-5-isocyanatomethyloctane,
[160] Bis (isocyanatoethyl) carbonate, bis (isocyanatoethyl) ether,
[161] 1,4-butylene glycol dipropyl ether-ω, ω'- diisocyanate,
[162] Lysine diisocyanatomethyl ester, lysine triisocyanate,
[163] 2-isocyanatoethyl-2,6-diisocyanatoethyl-2,6-diisocyanatohexanoate,
[164] 2-isocyanatopropyl-2,6-diisocyanatohexanoate,
[165] Xylene diisocyanate, bis (isocyanatoethyl) benzene,
[166] Bis (isocyanatopropyl) benzene,
[167] α, α, α ', α'-tetramethylxylylene diisoyanate,
[168] Bis (isocyanatobutyl) benzene, bis (isocyanatomethyl) naphthalene,
[169] Bis (isocyanatomethyl) diphenyl ether,
[170] Bis (isocyanatoethyl) phthalate,
[171] Aliphatic polyisocyanates such as mesitylene triisocyanate and 2,6-di (isocyanatomethyl) furan;
[172] Isophorone diisoyanate, bis (isocyanatomethyl) cyclohexane,
[173] Dicyclohexylmethane diisoyanate, cyclohexane diisoyanate,
[174] Methylcyclohexane diisoyanate,
[175] Dicyclohexyldimethylmethane diisoyanate,
[176] 2,2-dimethyldicyclohexylmethane diisoyanate,
[177] Bis (4-isocyanato-n-butylidene) pentaerythritol, dimer acid diisoyanate,
[178] 2-isocyanatomethyl-3- (3-isocyanatopropyl) -5-isocyanatomethylbicyclo [2,2,1] heptane,
[179] 2-isocyanatomethyl-3- (3-isocyanatopropyl) -6-isocyanatomethylbicyclo [2,2,1] heptane,
[180] 2-isocyanatomethyl-2- (3-isocyanatopropyl) -5-isocyanatomethylbicyclo [2,2,1] heptane,
[181] 2-isocyanatomethyl-2- (3-isocyanatopropyl) -6-isocyanatomethylbicyclo [2,2,1] heptane,
[182] 2-isocyanatomethyl-3- (3-isocyanatopropyl) -6- (2-isocyanatoethyl) bicyclo [2,2,1] heptane,
[183] 2-isocyanatomethyl-3- (3-isocyanatopropyl) -6- (2-isocyanatoethyl) bicyclo [2.1.1] heptane,
[184] 2-isocyanatomethyl-2- (3-isocyanatopropyl) -5- (2-isocyanatoethyl) bicyclo [2.1.1] heptane,
[185] 2-isocyanatomethyl-2- (3-isocyanatopropyl) -6- (2-isocyanatoethyl) bicyclo [2,2,1] heptane,
[186] Alicyclic polyisocyanates such as norbornane bis (isocyanatomethyl);
[187] Phenylene diisocyanate, tolylene diisocyanate,
[188] Ethylphenylene diisocyanate, isopropylenephenylene diisocyanate,
[189] Dimethylphenylene diisocyanate, diethylphenylene diisocyanate,
[190] Diisopropylphenylene diisocyanate, trimethylbenzene triisocyanate,
[191] Benzene triisocyanate, naphthalene diisocyanate,
[192] Methylnaphthalene diisocyanate, biphenyl diisocyanate,
[193] Tolidine diisocyanate, 4,4'-diphenylmethane diisocyanate,
[194] 3,3'-dimethyldiphenylmethane-4,4'-diisocyanate,
[195] Bibenzyl-4,4'-diisocyanate, bis (isocyanatophenyl) ethylene,
[196] 3,3'-dimethoxybiphenyl-4,4'-diisocyanate,
[197] Triphenylmethane triisocyanate, polymeric MDI,
[198] Naphthalene triisocyanate, diphenylmethane-2,4,4'-triisocyanate,
[199] 3-methyldiphenylmethane-4,6,4'-triisocyanate,
[200] 4-methyldiphenylmethane-3,5,2 ', 4', 6'-penta isocyanate,
[201] Phenyl isocyanatomethyl isocyanate,
[202] Phenylisocyanatoethylethyl isocyanate,
[203] Tetrahydronaphthylene diisocyanate,
[204] Hexahydrobenzene diisocyanate,
[205] Hexahydrodiphenylmethane-4,4'-diisocyanate, diphenylether diisocyanate,
[206] Ethylene glycol diphenylether diisocyanate,
[207] 1,3-propylene glycol diphenylether diisocyanate,
[208] Benzophenone diisocyanate, diethylene glycol diphenyl ether diisocyanate,
[209] Dibenzofuran diisocyanate, carbazole diisocyanate,
[210] Aromatic polyisocyanates such as ethylcarbazole diisocyanate and dichlorocarbazole diisocyanate;
[211] Thiodiethyl diisocyanate, thiopropyl diisocyanate,
[212] Thiodihexyl diisocyanate, dimethyl sulfone diisocyanate,
[213] Dithiodimethyl diisocyanate, dithiodiethyl diisocyanate,
[214] Sulfur-containing aliphatic isocyanates such as dithiopropyl diisocyanate and dicyclohexyl sulfide-4,4'-diisocyanate;
[215] Diphenylsulfide-2,4'-diisocyanate, diphenylsulfide-4,4'-diisocyanate,
[216] 3,3'-dimethoxy-4,4'-diisocyanatobenzyl thioether,
[217] Bis (4-isocyanatomethylbenzene) sulfide,
[218] Aromatic sulfide type isocyanates such as 4,4'-methoxybenzenethioethylene glycol-3,3'-diisocyanate;
[219] Diphenyl disulfide-4,4'- diisocyanate,
[220] 2,2'-dimethyldiphenyldisulfide-5,5'-diisocyanate,
[221] 3,3'-dimethyldiphenyldisulfide-5,5'-diisocyanate,
[222] 3,3'-dimethyldiphenyldisulfide-6,6'-diisocyanate,
[223] 4,4'-dimethyldiphenyldisulfide-5,5'-diisocyanate,
[224] 3,3'-dimethoxydiphenyldisulfide-4,4'-diisocyanate,
[225] Aromatic disulfide type isocyanates such as 4,4'-dimethoxydiphenyldisulfide-3,3'-diisocyanate;
[226] Diphenylsulfone-4,4'-diisocyanate, diphenylsulfone-3,3'-diisocyanate,
[227] Benzidinesulfone-4,4'-diisocyanate, diphenylmethanesulfone-4,4'-diisocyanate,
[228] 4-methyldiphenylmethanesulfone-2,4'-diisocyanate,
[229] 4,4'-dimethoxydiphenylsulfon-3,3'-diisocyanate,
[230] 3,3'-dimethoxy-4,4'-diisocyanatodibenzylsulfone,
[231] 4,4'-dimethyldiphenylsulfon-3,3'-diisocyanate,
[232] 4,4'-di-tert-butyldiphenylsulfone-3,3'-diisocyanate,
[233] 4,4'-methoxybenzeneethylenedisulfone-3,3'-diisocyanate,
[234] Aromatic sulfone type isocyanates such as 4,4'-dichlorodiphenyl sulfone-3,3'-diisocyanate;
[235] 4-methyl-3-isocyanatobenzenesulfonyl-4'-isocyanatophenol ester,
[236] Sulfonic acid ester type isocyanates such as 4-methoxy-3-isocyanatobenzenesulfonyl-4'-isocyanatophenol ester;
[237] 4-methyl-4'-isocyanate,
[238] Dibenzenesulfonylethylenediamine-4,4'-diisocyanate,
[239] 4,4'-methoxybenzenesulfonylethylenediamine-3,3'-diisocyanate,
[240] Aromatic sulfonic acid amides such as 4-methyl-3-isocyanatobenzenesulfonylanilide-4-methyl-3'-isocyanate;
[241] Thiophene-2,5-diisocyanate, thiophene-2,5-diisocyanatomethyl,
[242] And sulfur-containing heterocyclic compounds such as 1,4-dithiane-2,5-diisocyanate and 1,4-dithiane-2,5-diisocyanatomethyl.
[243] As an example of a compound having a functional group capable of reacting with an isocyanate,
[244] Polyol compounds: ethylene glycol, diethylene glycol, triethylene glycol, tetraethylene glycol, propylene glycol, dipropylene glycol, butylene glycol, neopentyl glycol, glycerin, trimethylol ethane, trimethylol propane, butane triol, 1,2 Methylglycoside, pentaerythritol, dipentaerythritol, tripentaerythritol, sorbitol, erythritol, trytol, ribitol, arabinitol, xylitol, alitol, mannitol, dolcitol, iditol, Glycol, inositol, hexanetriol, triglycerol, diglycerol, polyethylene glycol, polypropylene glycol, polytetraethylene ether glycol, tris (2-hydroxyethyl) isocyanurate, cyclobutanediol, cyclopentanediol, cyclohexanediol , cycloheptane diol, cyclooctane diol, cyclohexane dimethanol, hydroxypropyl cyclohexanol, tricyclo [5,2,1,0 2,6] decane-dimethoxy All, bicyclo [4,3,0] nonanediol, dicyclohexanediol, tricyclo [5,3,1,1] dodecane-diol, bicyclo [4,3,0] nonanedimethanol, tricyclo [5,3,1,1] dodecane-ethanol, hydroxypropyltricyclo [5,3,1,1] dodecanol, spiro [3,4] octanediol, 1,1'-bicyclohexylidene Aliphatic polyols such as diol, cyclohexanetriol, maltitol and lactitol;
[245] Dihydroxynaphthalene, trihydroxynaphthalene, tetrahydroxynaphthalene, dihydroxybenzene, benzenetriol, biphenyltetraol, pyrogallol, (hydroxynaphthyl) pyrogallol, trihydroxyphenanthrene, bisphenol A, Bisphenol F, xylylene glycol, di (2-hydroxyethoxy) benzene, bisphenol A-bis (2-hydroxyethyl ether), tetrabromobisphenol A, tetrabromobisphenol A-bis (2-hydroxy Aromatic polyols such as ethyl ether) and bisphenol S;
[246] Halogenated polyols such as dibromoneopentyl glycol,
[247] Polyester polyols, polycaprolactones, polythioether polyols, polyacetal polyols, polycarbonate polyols, polycaprolactone polyols, polythioether polyols, polybutadiene polyols, furanddimethanol,
[248] Condensation reaction products of organic acids such as oxalic acid, glutamic acid, adipic acid, acetic acid, phthalic acid, isophthalic acid, salicylic acid and pyromellitic acid with polyols,
[249] Addition reaction products of polyols with alkylene oxides such as ethylene oxide and propylene oxide,
[250] Addition reaction products of alkylene polyamines with alkylene oxides,
[251] 2,2-dimethylolactic acid, 2,2-dimethylolpropionic acid, 2,2-dimethylolbutanoic acid, 2,2-dimethylolvaleric acid, 3,4-diaminobutanesulfonic acid, 3,6-diamino-2 Toluenesulfonic acid and caprolactone modifications thereof;
[252] 2-mercaptoethanol, 3-mercapto-1,2-propanediol, glycerin di (mercaptoacetate), 1-hydroxy-4-mercaptocyclohexane, 2,4-dimercaptophenol, 2-mer Captohydroquinone, 4-mercaptophenol, 1,3-dimercapto-2-propanol, 2,3-dimercapto-1,3-butanediol, pentaerythritol tris (3-mercaptopropionate), Pentaerythritol mono (3-mercaptopropionate), pentaerythritol tris (thioglycolate), pentaerythritol pentakis (3-mercaptopropionate), hydroxymethyltris (mercaptoethylthiomethyl) Methane, 1-hydroxyethylthio-3-mercaptoethylthiobenzene, 4-hydroxy-4'-mercaptodiphenylsulfone, 2- (2-mercaptoeththio) ethanol, dihydroxyethylsulfide Mono (3-mercaptopropionate), dimercaptoethane mono (salicylate), hydroxyethylthiomethyltris (mercaptoethyl O), and the like methane.
[253] In addition, ethylenediamine, diethylenediamine, triethylenetetramine, propylenediamine, butylenediamine, hexamethylenediamine, cyclohexylenediamine, piperazine, 2-methylpiperazine, phenylenediamine, tolylenediamine, xylylene Diamine, α, α'-methylenebis (2-chloroaniline) -3,3'-dichloro-α, α'-biphenylamine, m-xylenediamine, isophoronediamine, N-methyl-3,3'- Polyamino compounds such as diaminopropylamine and norbornenediamine;
[254] Α-amino acids such as polythiol compounds, serine, lysine and histidine;
[255] And halosubstituted products of these active hydrogen compounds can also be used. You may use these individually or in combination.
[256] Although these resin may be used individually or in combination, it is not limited to these.
[257] Resin containing an ionic group on the surface exhibits excellent water dispersibility.
[258] As an example of an ionic group, a sulfonic acid group, a carboxylic acid group, a sulfuric acid group, a phosphoric acid group, a phosphonic acid group, a phosphinic acid group, its alkali metal base or ammonium base, primary to tertiary amine group, etc. are mentioned. Of these, alkali metal bases of carboxylic acids, ammonium bases of carboxylic acids, alkali metal bases of sulfonic acids and ammonium bases of sulfonic acids are preferred. In view of water dispersion stability, alkali metal bases of sulfonic acid and ammonium bases of sulfonic acid are particularly preferable. Introduction of the ionic group can be carried out by adding a monomer having an ionic group in the formation of the resin.
[259] For example, when an alkali metal base of carboxylic acid or an ammonium base of carboxylic acid is introduced into a polyester resin as an ionic group, polycarboxylic acids such as trimellitic acid are introduced into the system at the end of the polyester polymerization, and a carboxyl group is formed at the terminal of the resin. In addition, a method in which the group is neutralized with ammonia or sodium hydroxide and converted to a carboxylate group can be employed.
[260] In addition, when an alkali metal base of sulfonic acid or an ammonia base of sulfonic acid is introduced into the polyester resin fine particles as an ionic group, a mono- or dicarboxylic acid having an alkali metal base of sulfonic acid or an ammonia metal base of sulfonic acid is introduced into the system. It is also possible to introduce this ionic group into the polyester resin.
[261] As a salt, ammonium ion, Li, Na, K, Mg, Ca, Cu, Fe etc. are mentioned, Especially, K and Na are preferable.
[262] The present invention is a resin fine particle colored with at least one colorant selected from the group consisting of a compound represented by the general formula (1) and a compound represented by the general formula (2), and a dispersion obtained by dispersing the resin fine particles in an aqueous medium. And ink jet recording ink in emulsion form emulsified through this dispersion.
[263] The resin fine particles colored with the coloring agent of the present invention can be produced by the following method.
[264] 1. A method of emulsion polymerization after dissolving or dispersing a colorant in a polymerizable monomer.
[265] 2. After obtaining resin by superposition | polymerization of a polymerizable monomer, the coloring agent is added directly to this resin, and also an additive is added as needed, and it melt | dissolves or disperse | distributes uniformly, and colors it.
[266] 3. A water-soluble organic solvent (eg, acetone, methyl ethyl ketone, tetrahydrofuran or dioxane) or a conventional film forming aid (texanol or N, N-dimethylpyrrolidone, etc.) in the resin obtained by polymerization. The method obtained by melt | dissolving or disperse | distributing a coloring agent to), and adding an additive as needed, and dissolving or dispersing these uniformly and coloring them.
[267] 4. A material obtained by dissolving or dispersing a colorant in an organic solvent (eg, toluene) insoluble in water is added to the resin obtained by polymerization, and additives are added as necessary to dissolve or disperse them uniformly. Moreover, after adding water, forming a dispersion liquid and performing emulsification, the organic solvent insoluble in the said water is distilled off and colored as needed.
[268] 5. After obtaining the aqueous dispersion of resin, the coloring agent for inkjet recording is added to this, and coloring is performed by the high temperature drying method which processes this mixture at high temperature.
[269] For the resin fine particles colored with the colorants produced by these methods, the particle diameter is not particularly limited. In the dispersion obtained by dispersing in an aqueous medium using a dispersing agent, one having a small particle diameter is preferable. In the case where the particles are used as a dispersion of the colorant for ink jet recording, the average particle diameter thereof is 0.01 to 1 m, preferably 0.05 to 0.8 m. Moreover, the manufacturing method of the dispersion liquid obtained by disperse | distributing the resin fine particle colored with the coloring agent in the aqueous medium is not specifically limited, It is possible to obtain the dispersion liquid which has a desired composition using the dispersing agent chosen according to the use of a dispersion liquid.
[270] In the colored resin fine particles, the colorant is affected by the compatibility of the colorant with the resin, and thus, as the colorant, a colorant uniformly dispersed in the resin, a colorant partially dispersed in the resin or adhered to the surface of the resin Etc. can be mentioned. In particular, the coloring agent uniformly dispersed in the resin is preferable. The amount of the colorant to the resin is usually 1 to 90% by weight, preferably 5 to 50% by weight, but is not particularly limited.
[271] The colored resin fine particles or the dispersion liquid thereof can be used as various coloring materials and recording materials while making the most of the hydrophobicity thereof. The ink for ink jet recording can also be prepared as an emulsion by emulsifying it.
[272] The ink jet recording ink of the present invention contains, as main components, a colorant represented by the general formula (1) and / or a colorant represented by the general formula (2) (hereinafter, simply referred to as "inkjet recording colorant"), a resin, and water. It is an emulsion to be used and can be manufactured by the following method.
[273] 1. After dissolving or dispersing the inkjet recording colorant in the polymerizable monomer, emulsion polymerization is carried out, water is added if necessary, and these are dissolved or dispersed uniformly, and water is added to form an aqueous dispersion to emulsify the emulsion. How to do.
[274] 2. After obtaining a resin by polymerization, an inkjet recording colorant is added directly to this resin, an additive is added as needed, and it is melt | dissolved or disperse | distributed uniformly, and water is added and an aqueous dispersion is formed and emulsified. How to do it.
[275] 3. A water-soluble organic solvent (eg, acetone, methyl ethyl ketone, tetrahydrofuran or dioxane) or a conventional film forming aid (texanol or N, N-dimethylpyrrolidone, etc.) in the resin obtained by polymerization. ), A material obtained by dissolving or dispersing the colorant for ink jet recording is added, and additives are added as needed, and these are uniformly dissolved or dispersed, and water is added to form an aqueous dispersion and emulsified. And distilling off the water-soluble organic solvent as necessary.
[276] 4. The resin obtained by superposition | polymerization adds the material obtained by melt | dissolving or disperse | distributing the inkjet recording colorant in the organic solvent (for example, toluene) insoluble in water, adding an additive as needed, and dissolving these uniformly. Or a method of dispersing and adding water to form a dispersion to emulsify, and then distilling off the insoluble organic solvent in the water as necessary.
[277] 5. After obtaining the aqueous dispersion of resin, the coloring agent for inkjet recording is added to this, coloring a resin by the high temperature drying method which process this mixture at high temperature, and emulsifying the aqueous dispersion of this colored resin fine particle.
[278] In the above production, insoluble matter may be removed by filtration with a microporous filter such as a membrane filter.
[279] For colored resin fine particles ("colored resin fine particles" sometimes referred to simply as "colored resin fine particles") in the aqueous dispersion obtained by emulsification, the average particle diameter is preferably 0.01 to 1 m. More preferably, it is 0.05-0.8 micrometer. If the average particle diameter is too small, there is a possibility that the image density and the water resistance are reduced. If too large, the dispersion stability in the ink is reduced to form a precipitate, and as a result, the storage stability may be reduced, or clogging of the nozzle may occur.
[280] The amount of the colorant in the colored resin fine particles depends on the use, purpose, type of colorant or ink composition, printing density and clogging property of the ink. The amount of the colorant in the resin is 1 to 90% by weight, preferably 5 to 50% by weight.
[281] If the amount of the colorant is small, a large amount of ink is required to obtain a good recording image, and a load is placed on the printhead of the recording apparatus or the recording paper. In addition, if it is large, the colorant precipitates out of the resin particles, which forms a precipitate in the ink, causing clogging of the print head.
[282] In the inkjet recording ink of the present invention (hereinafter simply referred to as "ink"), in order to adjust the color tone of the ink, other colorants and known dyes or pigments treated in the form of emulsions or fine particles so as not to impair ink characteristics. You may contain it.
[283] The amount of the colored resin fine particles in the ink is 1 to 70% by weight, preferably 5 to 50% by weight.
[284] The ink of the present invention may contain a water-soluble organic solvent in order to adjust the wettability, surface tension, viscosity and drying rate of the ink, as necessary.
[285] Examples of the water-soluble organic solvent include polyhydric alcohols such as ethylene glycol, diethylene glycol, triethylene glycol, polyethylene glycol, propylene glycol, polypropylene glycol, 1,3-propanol, glycerin and thioglycol; Polyhydric alcohol ethers such as ethylene glycol monoethyl ether, ethylene glycol monobutyl ether, diethylene glycol monobutyl ether, dipropylene glycol monoethyl ether and triethylene glycol monomethyl ether; Ketones such as acetone and methyl ethyl ketone; Amides such as N, N-dimethylformamide, N, N-diethylformamide and N, N-dimethylacetamide; Nitrogen-containing compounds such as 2-pyrrolidone, N-methyl-2-pyrrolidone, N-vinyl-2-pyrrolidone and 1,3-dimethyl-2-imidazolidinone; Ethers such as tetrahydrofuran and dioxane; Alcohols such as methanol, ethanol, 1-propanol, 2-propanol, 1-butanol and 2-butanol; Glycerin and the like. When using a water-soluble organic solvent, the amount is 1 to 20% by weight based on the total amount of ink.
[286] In order to improve the storage stability of the ink, it is advantageous to adjust the pH to 7-10. there may be mentioned the examples of the pH adjusting agent, NaHCO 3, Na 2 B 4 O 7, ethanolamine, diethanolamine, triethanolamine alkali metal hydroxide, such as alkanol amines, calcium hydroxide, lithium hydroxide, such as an amine or the like.
[287] The ink of this invention can be made to contain the various additives used until now as needed. Examples of the additive include ultraviolet absorbers, antioxidants, dispersants, dispersion stabilizers, chelating agents, water-soluble polymers, masking agents, rust inhibitors, preservatives, viscosity modifiers, surface stabilizers, surface tension modifiers, pH regulators, resistivity modifiers, near infrared absorbers, penetrants, and the like. Can be mentioned.
[288] The ink of the present invention composed of the above components can be used as an ink for the inkjet recording method and as an ink for writing instruments. The ink is excellent in recording characteristics, storage stability, fixability to a recording medium, sharpness of a recording image, light resistance and water resistance.
[289] Since the colorant used for this invention has high solubility in an organic solvent, it can also be used for the solvent type injection ink for textile printing and printing.
[290] Hereinafter, although this invention is demonstrated further more concretely with reference to the following Example, this invention is not limited to these Examples. In addition, in each example, "part" is based on weight.
[291] Colorant Preparation Example 1
[292] Colorant number 1 shown in Table 1 was prepared by the following method.
[293] 285 parts of sulfolane was added to 21.1 parts of trimellitic anhydride, and this solution was heated to 185 degreeC. Moreover, 24.6 parts of 3-hydroxy-2-methyl-6-isopropylquinoline-4-carboxylic acid were added to this solution, and it was made to react at 200 degreeC for 1 hour.
[294] Formula (7) which is a precursor of the desired product:
[295]
[296] 37.2 parts of compounds represented by are obtained.
[297] 5 parts of compounds represented by the above formula (7) were added to 25 parts of o-dichlorobenzene, and the obtained mixture was heated at 100 ° C. 3.6 parts of thionyl chlorides were dripped at this mixture, it hold | maintained at that temperature for 2.5 hours, and excess thionyl chloride was distilled off under reduced pressure. Furthermore, 15 parts of di (2-ethylhexyl) amines were dripped at 100 degreeC, and it stirred for 2 hours, maintaining at that temperature, and cooled to room temperature.
[298] The obtained reaction mixture was discharged to 50 parts of methanol, and the following general formula (8):
[299]
[300] Six parts of coloring agent number 1 represented by this were obtained.
[301] The maximum absorption wavelengths (λ max) of the colorant in toluene were 453 nm and 429 nm, and the gram absorption coefficient (ε g) at 453 nm was 90600 ml / gcm. Elemental analysis of this compound is shown below.
[302] Elemental analysis
[303] CHN Experimental value (%)76.38.44.6 Estimated value (%)76.28.44.7
[304] The compound had high solvent solubility and solubility in toluene at room temperature was 30% or more.
[305] Colorant Preparation Example 2
[306] The coloring agent of No. 118 in Table 2 was manufactured by the following method.
[307] 26.7 parts of m-nitrobenzoyl chlorides were added to 100 parts of toluene, and 34.8 parts of di-2-ethylhexylamine and 11.4 parts of pyridine were added, and it reacted for 4 hours. Subsequently, the reaction mixture was filtered to remove precipitated solids, and then the filtrate was concentrated to form a precursor of the target compound (9):
[308]
[309] 56.2 parts of compounds represented by are obtained.
[310] 53.0 parts of the compound represented by the formula (9) were added to 250 parts of dimethylformamide, and 100 parts of 20% sodium hydrogen sulfide solution was added and reacted at 70 ° C for 2 hours, and then the reaction mixture was cooled to 30 ° C. I was. This reaction mixture was discharged to 250 parts of water, and 100 parts of toluene was added. After the mixture was left to stand, the upper layer was extracted and concentrated to form the following formula (10):
[311]
[312] 46.5 parts of compounds represented by are obtained.
[313] 39.6 parts of n-octylamine and 17.0 parts of cyanoethyl acetate were mixed and reacted for 2 hours. Subsequently, 30 parts of water and 29.8 parts of ethyl 3-oxysoenanthanoate were injected into this mixture, and it was made to react at 90 degreeC for 2 hours. The reaction product was discharged into 400 parts of 3% aqueous sulfuric acid solution, and 100 parts of toluene was added, mixed and left to stand, and then the upper layer was extracted and concentrated to form a precursor of the target compound (11):
[314]
[315] 40.8 parts of compounds represented by were obtained.
[316] 14.3 parts of the compound of formula (10) and 29 parts of 11% aqueous hydrochloric acid solution were added to 100 parts of methanol, and cooled to 10 ° C while stirring. Subsequently, 11 parts of 30% aqueous sodium nitrate solution was added, reacted for 1 hour, and 0.18 part of sulfamic acid was added, followed by stirring at 10 DEG C or lower for 30 minutes (solution of diazonium salt). Meanwhile, 100 parts of methanol, 12.1 parts of the compound of Formula 11 and 30 parts of 6% aqueous sodium hydroxide solution were mixed and then cooled to 10 ° C. or less.
[317] The solution of the diazonium salt was added to this mixture and reacted for 3 hours. 500 parts of water was added to the mixture, followed by stirring. The supernatant was removed by decantation, and only the tar component was taken. The component was purified by column chromatography to obtain the following Chemical Formula (12):
[318]
[319] 12.7 parts of colorants of No. 118 represented by were obtained.
[320] The maximum absorption wavelength (λ max) of the colorant in toluene was 432 nm, and the gram absorption coefficient (ε g) at 432 nm was 62000 ml / gcm. Elemental analysis of this compound is shown below.
[321] Elemental analysis
[322] CHN Experimental value (%)72.69.510.5 Estimated value (%)72.89.610.4
[323] The compound had high solvent solubility and solubility in toluene at room temperature was 30% or more.
[324] Example 1
[325] Preparation example of colored resin fine particles and dispersion (A) thereof
[326] Into the autoclave equipped with a thermometer and a stirrer, 180 parts of dimethyl terephthalate, 10 parts of pentasodium sulfoisophthalic acid dimethyl ester, 130 parts of ethylene glycol, 25 parts of tricyclodecane dimethanol and 0.1 part of tetrabutoxy titanate were injected, It transesterified by heating at 180-220 degreeC for about 3 hours. Subsequently, this reaction mixture was heated up to 240 degreeC, the pressure in an oatclave was gradually reduced to 10 mmHg, and reaction was continued for 1 hour. The pressure in the autoclave was restored to atmospheric pressure to obtain a copolyester resin.
[327] Next, 100 parts of the obtained polyester resin, 150 parts of methyl ethyl ketone, 150 parts of tetrahydrofuran and 10 parts of a coloring agent for inkjet recording indicated by the number 1 in Table 1 were mixed. Thereafter, 600 parts of deionized water was added thereto, and these were further mixed. The mixture was filtered through a 0.8 micron membrane filter and heated to distill off the solvent. After cooling, deionized water was added to adjust the solid content to 20% by weight. In this way, a dispersion (A) of colored resin fine particles was obtained. The resin fine particles dispersed in this dispersion were fine particles of a resin colored in yellow having an average particle diameter of 0.2 µm.
[328] Characterization
[329] Glycerine and deionized water were added to the dispersion of the colored fine resin particles to obtain an aqueous ink having a solid content of 15% by weight.
[330] This water-based ink was placed in an ink cartridge of a piezo-type inkjet printer, and printing and image recording were performed by this printer. The following items were also tested. The results are shown in Table 3 (a).
[331] Evaluation criteria of test items are as follows.
[332] (A) Evaluation of Emulsion:
[333] The state of the emulsion at the time of preparation of the emulsion ink was visually evaluated.
[334] Evaluation standard:
[335] Emulsion is good: ◎
[336] A little float was observed, but practically no problem:
[337] Gelling is observed slightly, considered to be problematic: △
[338] Emulsion is bad Problem with ink: ×
[339] (B) the evaluation of the image:
[340] An image was formed on the plain paper, and the stain state was visually evaluated.
[341] Evaluation standard:
[342] No stain observed: ◎
[343] Spots were observed but no effect on burns: ○
[344] Stain is noticeably observed: ×
[345] (C) Evaluation of image recording density:
[346] For the plain paper having the recording image, the recording density (OD value) was measured using a reflective densitometer (manufactured by Macbed) to evaluate the image recording density.
[347] Evaluation standard:
[348] OD value over 1.1: ◎
[349] OD value is 1.0 to less than 1.1: ○
[350] OD value is less than 0.8 to 1.0: △
[351] OD value is less than 0.8: ×
[352] (D) Evaluation of Water Resistance:
[353] For the printed portion of the plain paper having a recording image for testing, the print density (OD value) before or after underwater immersion and air drying was measured by a reflective densitometer. Water resistance was evaluated in comparison with OD 1 .
[354] OD 1 = (OD value after immersion and air drying) / (OD value before immersion) × 100
[355] Evaluation standard:
[356] OD 1 is 90% to 100%: ◎◎
[357] OD 1 is less than 80% to 90%: ◎
[358] OD 1 is less than 70% to 80%: ○
[359] OD 1 is less than 50% to 70%:
[360] OD 1 is less than 50%: ×
[361] (F) Evaluation of the storage stability of the ink:
[362] In order to evaluate the initial storage stability of the water-based ink (1 month storage at 40 ° C) and its long-term storage stability (3 months storage at 40 ° C), the state of the water-based ink after these storages was visually observed. In addition, recording was continuously performed by a printer for a long time, and blockage was observed.
[363] (F-1) State after storage of ink:
[364] Evaluation standard:
[365] No problem due to no sediment or float: ○
[366] Slight float is observed: △
[367] Problems with sediment and suspended solids: ×
[368] (F-2) Blockage:
[369] Evaluation standard:
[370] Normal: ○
[371] It is negligible at this stage: △
[372] Abnormality: ×
[373] Example 2
[374] Preparation Example of Dispersion (B) of Colored Resin Fine Particles
[375] In an autoclave equipped with a thermometer and a stirrer, 150 parts of dimethyl terephthalate, 50 parts of dimethyl isophthalate, 5 parts of dimethyl ester of pentasodium sulfoisophthalic acid, 150 parts of ethylene glycol, 250 parts of neopentyl glycol and tetrabutoxy titanate 0.1 Part was injected and heated at 180 to 220 ° C. for about 3 hours to effect transesterification. Subsequently, this reaction mixture was heated up to 240 degreeC, the pressure in an oatclave was gradually reduced to 10 mmHg, and reaction was continued for 1 hour. The pressure in the autoclave was restored to atmospheric pressure to obtain a copolyester resin. Next, 100 parts of the obtained polyester resin, 150 parts of methyl ethyl ketone, 150 parts of tetrahydrofuran and 10 parts of the colorant for inkjet recording indicated by the number 5 in Table 1 were mixed. Thereafter, 600 parts of deionized water was added thereto, and these were further mixed. The mixture was filtered through a 0.8 micron membrane filter and heated to distill off the solvent. After cooling, deionized water was added to adjust the solid content to 20% by weight. In this way, a dispersion (B) of colored resin fine particles was obtained. The resin fine particles dispersed in this dispersion were fine particles of a resin colored in yellow having an average particle diameter of 0.3 µm.
[376] Glycerine and deionized water were added to the dispersion of the colored fine resin particles to obtain an aqueous ink having a solid content of 15% by weight. Ink properties were evaluated in the same manner as in Example 1, and the results are shown in Table 3 (a).
[377] Examples 3 to 151
[378] The ink was produced by the method of Example 1 or 2 using the coloring agent for inkjet recording shown in Table 1 or Table 2 (a)-Table 2 (j), and the ink characteristic was evaluated. The results are shown in Tables 3 (a) to 3 (f). In addition, in Table 3 (a)-Table 3 (f), the "manufacturing method of an ink" means the method of Example 1 or Example 2.
[379] All of the water-based inks using the inkjet recording colorant of the present invention were particularly excellent in water resistance, and also excellent in long-term storage stability. In addition, the recorded image was also good without spots, and the light resistance was also excellent.
[380] Comparative Example 1
[381] Formula (13)
[382]
[383] Ink was manufactured like Example 2 using the quinophthalone type coloring agent shown by the following.
[384] Partially insoluble was observed. The ink was passed through a filter to remove insoluble matters, and the characteristics thereof were evaluated in the same manner as in Example 1. As a result, as shown in Table 3 (f), the obtained colorant was considerably inferior to the colorant for inkjet recording of the present invention.
[385] Comparative Example 2
[386] Formula (14)
[387]
[388] An ink was prepared in the same manner as in Example 1 using the quinophthalone compound represented by.
[389] Since the solubility of this coloring agent was low, an insoluble matter was observed. The ink was passed through a filter to remove insoluble matters, and the characteristics thereof were evaluated in the same manner as in Example 1.
[390] As a result, as shown in Table 3 (f), the obtained colorant was considerably inferior to the colorant for inkjet recording of the present invention.
[391] Comparative Example 3
[392] Oil Soluble Dyes C.I. Solvent Yellow 16:
[393]
[394] Using in the same manner as in Example 1 to prepare an ink.
[395] Since the solubility of this coloring agent was low, an insoluble matter was observed. The ink was passed through a filter to remove insoluble matters, and the characteristics thereof were evaluated in the same manner as in Example 1.
[396] As a result, as shown in Table 3 (f), the obtained colorant was considerably inferior to the colorant for inkjet recording of the present invention.
[397] ExampleColorant NumberInk manufacturing methodCharacteristic evaluation ABCDEF-1 (1 month later)F-1 (3 months later)F-2 (after 1 month)F-2 (3 months later) OneOneExample 1◎◎◎◎◎◎◎○○○○ 25Example 2○◎○◎◎○△○△ 32Example 1○◎○◎◎◎○△○△ 43↑○◎△◎◎○△○△ 54↑△◎×◎◎○×○× 66↑○◎△◎◎○△○△ 79↑○◎○◎◎○△○△ 812↑◎◎○◎◎◎○○○○ 913↑△◎○◎◎○△○△ 1017↑◎◎◎◎◎◎◎○○○○ 1119↑△◎△◎◎○○○○ 1220↑○◎○◎◎◎○○○○ 1321↑◎◎◎◎◎◎◎○○○○ 1425↑△◎○◎◎○△○△ 1526↑△◎△◎◎○△○△ 162Example 2◎◎○◎◎◎○○○△ 173↑○◎△◎◎○△○△ 184↑△◎×◎◎○×○× 195↑○◎○◎◎○△○△ 206↑○◎△◎◎○△○△ 2110↑△◎×◎◎○△○△ 2211↑◎◎◎◎◎◎◎○○○○ 2315↑△◎△◎◎○△○△ 2416↑△◎△◎◎○△○△ 2522↑○◎○◎◎○△○△ 2623↑△◎×◎◎○×○× 2724↑△◎×◎◎○×○× 2827↑△◎△◎◎○△○△
[398] ExampleColorant NumberInk manufacturing methodCharacteristic evaluation ABCDEF-1 (1 month later)F-1 (3 months later)F-2 (after 1 month)F-2 (3 months later) 2928Example 1◎◎◎◎◎◎◎○○○○ 3029↑◎◎◎◎◎◎◎○○○○ 3130↑◎◎◎◎◎◎◎○○○○ 3231↑○◎○◎◎○△○△ 3332↑◎◎○◎◎◎○○○○ 3433↑◎◎◎◎◎◎◎○○○○ 3534↑◎◎○◎◎○○○○ 3635↑◎○◎◎◎◎○○○○ 3736↑○◎○◎◎○△○△ 3838Example 2○◎△◎◎○△○△ 3941Example 1○◎△◎◎○△○△ 4042↑○◎△◎◎○△○△ 4144↑○◎△◎◎○△○△ 4246↑△◎△◎◎◎○△○△ 4347↑○◎△◎◎◎○△○△ 4449↑○◎△◎◎◎○○○○ 4550↑△◎△◎◎○△○△ 4652↑△◎×◎◎△×○× 4753↑△◎×◎◎△×○× 4855↑△◎×◎◎○△○△ 4956Example 2○◎○◎◎◎○○○○ 5057↑○◎○◎◎◎○○○○ 5158↑○◎○◎◎◎○○○○ 5260↑○◎△◎◎◎○○○○ 5361↑○◎○◎◎◎○○○○ 5463↑△◎△◎◎○△○△ 5564↑△◎△◎◎○△○△ 5665↑△◎△◎◎○×○×
[399] ExampleColorant NumberInk manufacturing methodCharacteristic evaluation ABCDEF-1 (1 month later)F-1 (3 months later)F-2 (after 1 month)F-2 (3 months later) 5766Example 2△◎△◎◎○△○△ 5869Example 1△◎△◎◎○△○△ 5970↑◎◎◎◎◎◎○○○○ 6071↑◎◎◎◎◎◎○○○○ 6172↑◎◎◎◎◎◎○○○○ 6273↑○◎○◎◎◎○○○○ 6374↑○◎○◎◎◎○○○○ 6475↑○◎○◎◎◎○△○△ 6576↑△◎△◎◎△×○× 6678↑△◎△◎◎○△○△ 6779↑△◎△◎◎○×○× 6881Example 2△◎△◎◎○×○× 6982↑◎◎○◎◎◎○○○○ 7083↑○◎○◎◎◎○○○○ 7184↑◎◎◎◎◎◎○○○○ 7285↑◎◎◎◎◎◎○○○○ 7388↑○◎○◎◎◎○○○○ 7491↑○◎○◎◎◎○○○○ 7594↑◎◎◎◎◎◎○○○○ 7695↑○◎◎◎◎◎○○○○ 77101Example 1○◎△◎◎○△○△ 78102↑○◎△◎◎○△○△ 79103↑△◎△◎◎◎○△○△ 80104↑△◎×◎◎○×○× 81105↑○◎○◎◎◎○○○○ 82106↑△◎△◎◎○△○△ 83107↑△◎△◎◎○△○△ 84108↑△◎△◎◎○×○×
[400] ExampleColorant NumberInk manufacturing methodCharacteristic evaluation ABCDEF-1 (1 month later)F-1 (3 months later)F-2 (after 1 month)F-2 (3 months later) 85109Example 1△◎△◎◎○△○△ 86110↑◎◎◎◎◎◎○○○○ 87111↑○◎○◎◎◎○○○○ 88112↑◎◎○◎◎◎○○○○ 89113↑◎◎◎◎◎◎○○○○ 90114↑◎◎◎◎◎◎◎○○○○ 91115↑◎◎◎◎◎◎◎○○○○ 92116↑◎◎◎◎◎◎◎○○○○ 93133↑◎◎◎◎◎◎○○○○ 94134↑◎◎◎◎◎◎◎○○○○ 95135↑◎◎◎◎◎◎◎○○○○ 96121↑◎◎◎◎◎◎○○○○ 97122↑◎◎◎◎◎◎◎○○○○ 98123↑◎◎◎◎◎◎◎○○○○ 99117↑◎◎◎◎◎◎○○○○ 100118↑◎◎◎◎◎◎◎○○○○ 101119↑◎◎◎◎◎◎◎○○○○ 102124↑◎◎◎◎◎◎○○○○ 103125↑◎◎◎◎◎◎◎○○○○ 104128↑◎◎◎◎◎◎○○○○ 105129↑◎◎◎◎◎◎◎○○○○ 106130↑◎◎◎◎◎◎◎○○○○ 107131↑◎◎◎◎◎◎◎○○○○ 108132↑◎◎◎◎◎◎◎○○○○ 109120↑◎◎◎◎◎◎○○○○ 110126↑◎◎◎◎◎◎◎○○○○ 111127↑◎◎◎◎◎◎◎○○○○ 112138↑○◎△◎◎○△○△
[401] ExampleColorant NumberInk manufacturing methodCharacteristic evaluation ABCDEF-1 (1 month later)F-1 (3 months later)F-2 (after 1 month)F-2 (3 months later) 113142Example 2○◎△◎◎○△○△ 114143Example 1○◎○◎◎○△○△ 115144↑○◎○◎◎○△○△ 116146↑○◎○◎◎○△○△ 117148↑○◎△◎◎○△○△ 118149↑○◎○◎◎○○○○ 119151↑△◎△◎◎○×○× 120152↑△◎○◎◎○△○△ 121154↑○◎○◎◎○△○△ 122155↑△◎○◎◎○△○△ 123157↑○◎◎◎◎◎○○○△ 124158Example 2△◎○◎◎○△○△ 125159↑△◎○◎◎○△○△ 126160↑△◎△◎◎○△○× 127162↑△◎○◎◎○△○△ 128163↑△◎○◎◎○△○△ 129165↑△◎○◎◎○△○△ 130166↑△◎△◎◎○×○× 131167↑△◎△◎◎○×○× 132168↑△◎△◎◎○△○△ 133171Example 1△◎△◎◎○△○△ 134172↑△◎△◎◎○△○× 135173↑△◎△◎◎○△○× 136174↑△◎△◎◎○△○× 137175↑△◎×◎◎○×○× 138176↑△◎×◎◎○×○× 139177↑○◎△◎◎○△○△ 140178↑△◎△◎◎○△○△
[402] ExampleColorant NumberInk manufacturing methodCharacteristic evaluation ABCDEF-1 (1 month later)F-1 (3 months later)F-2 (after 1 month)F-2 (3 months later) 141180Example 1○◎○◎◎○△○△ 142181↑○◎○◎◎○△○△ 143183Example 2○◎○◎◎○△○△ 144184↑◎◎◎◎◎◎○○○○ 145187↑◎◎○◎◎○○○○ 146188↑○◎△◎◎○○○△ 147189↑○◎○◎◎○○○○ 148190↑◎◎○◎◎○○○○ 149191↑◎◎◎◎◎◎○○○○ 150192↑◎◎◎◎◎◎○○○○ 151193↑○◎○◎◎○△○△ Comparative Example 1Formula (13)↑×○×○◎×××× Comparative Example 2Formula (14)Example 1×○×○○×××× Comparative Example 3C.I.Solvent Yellow 16↑×○×○×××××
[403] As described above, the colorant for ink jet recording of the present invention is particularly excellent in water resistance and excellent in light resistance and compatibility with resin. Inkjet recording inks prepared using colorants are excellent in light resistance and storage stability.
[404] When the ink of the present invention is used in the inkjet recording method, it is possible to form a high quality image without bleeding, and also has excellent water resistance of the obtained recording image.
权利要求:
Claims (15)
[1" claim-type="Currently amended] In the water-based ink for inkjet recording containing at least a colorant, water and resin insoluble in water as a main component and taking the form of an emulsion,
The coloring agent,
General formula (1) below:

[Wherein, R 1 to R 3 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, -CONR 4 R 5 or -COOR 6 (wherein R 4 to R 6 are each independently a hydrogen atom, unsubstituted or substituted Is an alkyl group, or an unsubstituted or substituted aryl group, and all of R 1 to R 3 are not hydrogen atoms at the same time.
Formula (2)

Wherein R 7 to R 11 are each independently a hydrogen atom, a halogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, an unsubstituted or substituted alkoxy group, an unsubstituted or substituted aryl group, an unsubstituted or substituted aryl Oxy group, hydroxyl group, -NR 14 R 15 , wherein R 14 and R 15 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, or an aryl group, -COX 1 , wherein X 1 is unsubstituted or substituted An alkoxy group, unsubstituted or substituted aryloxy group, or -NR 16 R 17 , wherein R 16 and R 17 each independently represent a hydrogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, or an unsubstituted or substituted group Aryl group), -COO (CH 2 ) n -COX 2 , -OCOX 3 or -NHCOX 4 (wherein X 2 to X 4 are each independently unsubstituted or substituted alkyl, aralkyl, unsubstituted or substituted Is an aryl group, unsubstituted or substituted alkoxy group, or unsubstituted or substituted aryloxy group, n is an integer of 1 to 3),
R 12 is an unsubstituted or substituted alkyl group,
R 13 is at least one yellow colorant selected from the group consisting of pyridone azo compounds represented by unsubstituted or substituted alkyl, aralkyl or unsubstituted or substituted aryl groups. Water-based ink.
[2" claim-type="Currently amended] The method of claim 1, wherein the yellow colorant is of the general formula (1):

[Wherein, R 1 to R 3 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, -CONR 4 R 5 or -COOR 6 (wherein R 4 to R 6 are each independently a hydrogen atom, unsubstituted or substituted Alkyl group, or an unsubstituted or substituted aryl group, and R 1 to R 3 are not all hydrogen atoms at the same time.
[3" claim-type="Currently amended] The compound according to claim 2, wherein R 2 and R 3 in General Formula (1) are each -CONR 4 R 5 or -COOR 6 , wherein R 4 to R 6 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, Or an unsubstituted or substituted aryl group).
[4" claim-type="Currently amended] 3. A compound according to claim 2, wherein R 1 in General Formula (1) is a hydrogen atom or an unsubstituted or substituted alkyl group having 5 or less carbon atoms, one of R 2 or R 3 is a hydrogen atom, and the other is -CONR 4 And R 5 or -COOR 6 , wherein R 4 to R 6 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, or an unsubstituted or substituted aryl group.
[5" claim-type="Currently amended] 3. A compound according to claim 2, wherein R 1 in the general formula (1) is a hydrogen atom or an unsubstituted or substituted alkyl group having 5 or less carbon atoms, R 2 is a hydrogen atom, and R 3 is -CONR 4 R 5 (where R is 4 and R 5 are each independently an unsubstituted or substituted alkyl group having 6 or more carbon atoms, or an unsubstituted or substituted aryl group).
[6" claim-type="Currently amended] The method of claim 1, wherein the yellow colorant is represented by the general formula (2):

Wherein R 7 to R 11 are each independently a hydrogen atom, a halogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, an unsubstituted or substituted alkoxy group, an unsubstituted or substituted aryl group, an unsubstituted or substituted aryl Oxy group, hydroxyl group, -NR 14 R 15 , wherein R 14 and R 15 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, or an aralkyl group, -COX 1 wherein X 1 is unsubstituted or Substituted alkoxy groups, unsubstituted or substituted aryloxy groups, or -NR 16 R 17 , wherein R 16 and R 17 each independently represent a hydrogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, or an unsubstituted or substituted group Is an aryl group), -COO (CH 2 ) n -COX 2 , -OCOX 3 or -NHCOX 4 (wherein X 2 to X 4 are each independently unsubstituted or substituted alkyl, aralkyl, unsubstituted or Substituted aryl group, unsubstituted or substituted alkoxy group, or unsubstituted or substituted aryloxy group , N is an integer of 1 to 3),
R 12 is an unsubstituted or substituted alkyl group,
R 13 is a pyridone azo compound represented by unsubstituted or substituted alkyl group, aralkyl group, or unsubstituted or substituted aryl group}.
[7" claim-type="Currently amended] 7. The inkjet recording aqueous ink according to claim 6, wherein at least one of R 7 to R 9 in the general formula (2) is -COX 1 and R 13 is an unsubstituted or substituted alkyl group.
[8" claim-type="Currently amended] The unsubstituted or substituted alkyl group represented by R 13 in the general formula (2) is a linear or branched alkyl group having 8 or more carbon atoms, or-(CH 2 ) n COR 18 having 8 or more carbon atoms, wherein R 18 is an unsubstituted or substituted alkoxy group, an unsubstituted or substituted aryl group, or -NR 19 R 20 , wherein R 19 and R 20 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, an aralkyl group or an unsubstituted group A substituted or substituted aryl group, n is an integer of 1 or 2].
[9" claim-type="Currently amended] General formula (1) below:

[Wherein, R 1 is a linear, branched or cyclic alkyl group having 2 or more carbon atoms,
R 2 is a hydrogen atom,
R 3 is -CONR 4 R 5 , wherein R 4 and R 5 are each independently a linear, branched or cyclic alkyl group having 6 or more carbon atoms.
[10" claim-type="Currently amended] The compound according to claim 9, wherein in formula (1), R 1 is an isopropyl group, R 2 is a hydrogen atom, and R 3 is -CONR 4 R 5 , wherein R 4 and R 5 are each independently A linear or branched alkyl group having 8 or more carbon atoms).
[11" claim-type="Currently amended] General formula (2) below:

Wherein R 7 to R 11 are each independently a hydrogen atom, a halogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, an unsubstituted or substituted alkoxy group, an unsubstituted or substituted aryl group, an unsubstituted or substituted aryl Oxy group, hydroxyl group, -NR 14 R 15 , wherein R 14 and R 15 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, or an aralkyl group, -COX 1 wherein X 1 is unsubstituted or Substituted alkoxy groups, unsubstituted or substituted aryloxy groups, or -NR 16 R 17 , wherein R 16 and R 17 each independently represent a hydrogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, or an unsubstituted or substituted group Is an aryl group), -COO (CH 2 ) n -COX 2 , -OCOX 3 or -NHCOX 4 (wherein X 2 to X 4 are each independently unsubstituted or substituted alkyl, aralkyl, unsubstituted or Substituted aryl group, unsubstituted or substituted alkoxy group, or unsubstituted or substituted aryloxy group , n is an integer of 1 to 3),
R 12 is an unsubstituted or substituted alkyl group,
R 13 is an unsubstituted or substituted alkyl group, an aralkyl group, or an unsubstituted or substituted aryl group}.
[12" claim-type="Currently amended] The pyridone azo compound according to claim 11, wherein in Formula (2), at least one of R 7 to R 11 is -COX 1 , and R 13 is an unsubstituted or substituted alkyl group.
[13" claim-type="Currently amended] 13. The pyridone azo compound according to claim 12, wherein in formula (2), at least one of R 7 to R 11 is -CONR 16 R 17 .
[14" claim-type="Currently amended] General formula (1) below:

[Wherein, R 1 to R 3 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, -CONR 4 R 5 or -COOR 6 (wherein R 4 to R 6 are each independently a hydrogen atom, unsubstituted or substituted Is an alkyl group, or an unsubstituted or substituted aryl group, and R 1 to R 3 are not all hydrogen atoms at the same time.] A quinophthalone compound represented by the following formula (2):

Wherein R 7 to R 11 are each independently a hydrogen atom, a halogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, an unsubstituted or substituted alkoxy group, an unsubstituted or substituted aryl group, an unsubstituted or substituted aryl Oxy group, hydroxyl group, -NR 14 R 15 , wherein R 14 and R 15 are each independently a hydrogen atom, an unsubstituted or substituted alkyl group, or an aryl group, -COX 1 , wherein X 1 is unsubstituted or substituted An alkoxy group, unsubstituted or substituted aryloxy group, or -NR 16 R 17 , wherein R 16 and R 17 each independently represent a hydrogen atom, an unsubstituted or substituted alkyl group, an aralkyl group, or an unsubstituted or substituted group Aryl group), -COO (CH 2 ) n -COX 2 , -OCOX 3 or -NHCOX 4 (wherein X 2 to X 4 are each independently unsubstituted or substituted alkyl, aralkyl, unsubstituted or substituted Is an aryl group, unsubstituted or substituted alkoxy group, or unsubstituted or substituted aryloxy group, n is an integer of 1 to 3),
R 12 is an unsubstituted or substituted alkyl group,
R 13 is colored by at least one yellow colorant selected from the group consisting of pyridone azo compounds represented by unsubstituted or substituted alkyl, aralkyl or unsubstituted or substituted aryl. Resin fine particles.
[15" claim-type="Currently amended] A dispersion liquid obtained by dispersing the resin fine particles of claim 14 in an aqueous medium.
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同族专利:
公开号 | 公开日
EP1125990A4|2002-10-09|
CN1218001C|2005-09-07|
KR100423881B1|2004-03-22|
US7091261B1|2006-08-15|
WO2001009256A1|2001-02-08|
EP1125990A1|2001-08-22|
CN1322227A|2001-11-14|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题
法律状态:
1999-07-29|Priority to JP21507099
1999-07-29|Priority to JP1999-215070
1999-08-06|Priority to JP22398299
1999-08-06|Priority to JP1999-223982
1999-08-23|Priority to JP23528899
1999-08-23|Priority to JP1999-235288
1999-09-09|Priority to JP1999-255772
1999-09-09|Priority to JP25577299
2000-07-26|Application filed by 사토 아키오, 미쯔이카가쿠 가부시기가이샤
2001-11-09|Publication of KR20010099658A
2004-03-22|Application granted
2004-03-22|Publication of KR100423881B1
优先权:
申请号 | 申请日 | 专利标题
JP21507099|1999-07-29|
JP1999-215070|1999-07-29|
JP22398299|1999-08-06|
JP1999-223982|1999-08-06|
JP23528899|1999-08-23|
JP1999-235288|1999-08-23|
JP1999-255772|1999-09-09|
JP25577299|1999-09-09|
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