JP2005029738A - Method for manufacturing organic pigment dispersion - Google Patents
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- JP2005029738A JP2005029738A JP2003273150A JP2003273150A JP2005029738A JP 2005029738 A JP2005029738 A JP 2005029738A JP 2003273150 A JP2003273150 A JP 2003273150A JP 2003273150 A JP2003273150 A JP 2003273150A JP 2005029738 A JP2005029738 A JP 2005029738A
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- 239000006185 dispersion Substances 0.000 title claims abstract description 41
- 238000004519 manufacturing process Methods 0.000 title claims abstract description 9
- 238000000034 method Methods 0.000 title abstract description 25
- 239000012860 organic pigment Substances 0.000 title description 11
- 239000000049 pigment Substances 0.000 claims abstract description 51
- 239000002245 particle Substances 0.000 claims abstract description 26
- 239000000203 mixture Substances 0.000 claims abstract description 22
- 229920005989 resin Polymers 0.000 claims abstract description 19
- 239000011347 resin Substances 0.000 claims abstract description 19
- XCJYREBRNVKWGJ-UHFFFAOYSA-N copper(II) phthalocyanine Chemical group [Cu+2].C12=CC=CC=C2C(N=C2[N-]C(C3=CC=CC=C32)=N2)=NC1=NC([C]1C=CC=CC1=1)=NC=1N=C1[C]3C=CC=CC3=C2[N-]1 XCJYREBRNVKWGJ-UHFFFAOYSA-N 0.000 claims abstract description 15
- 238000000227 grinding Methods 0.000 claims abstract description 14
- IEQIEDJGQAUEQZ-UHFFFAOYSA-N phthalocyanine Chemical compound N1C(N=C2C3=CC=CC=C3C(N=C3C4=CC=CC=C4C(=N4)N3)=N2)=C(C=CC=C2)C2=C1N=C1C2=CC=CC=C2C4=N1 IEQIEDJGQAUEQZ-UHFFFAOYSA-N 0.000 claims abstract description 11
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- Pigments, Carbon Blacks, Or Wood Stains (AREA)
Abstract
Description
本発明は有機顔料粒子が微細でかつ均一に、樹脂または樹脂と有機溶剤の混合物を含むビヒクル中に分散され、高い明度、鮮明性および着色力を有する有機顔料分散体の製造方法に関するものである。 The present invention relates to a method for producing an organic pigment dispersion in which organic pigment particles are finely and uniformly dispersed in a vehicle containing a resin or a mixture of a resin and an organic solvent and have high brightness, sharpness, and coloring power. .
微細な有機顔料分散体の製造方法としては、粗大で不揃いな粗製有機顔料粒子を、アシッドペースティング法、アシッドスラリー法、ソルトミリング法等の顔料化工程により微細化し、その後で樹脂、溶剤等に分散させる方法が一般的である。
しかしながらこれらの方法では、顔料化において乾燥工程が必要なため、有機顔料粒子が強固な乾燥凝集を起こしてしまい、この凝集をほぐして分散させるのに、多大なエネルギーと時間を要することが多い。また微細で均一に分散させることが困難である場合も多く、高い明度、鮮明性および着色力を有する有機顔料分散体を得ることが困難であることも多い。
As a method for producing a fine organic pigment dispersion, coarse and irregular coarse organic pigment particles are refined by a pigmentation process such as an acid pasting method, an acid slurry method, a salt milling method, and then used as a resin, a solvent, etc. A method of dispersing is common.
However, in these methods, since a drying step is required for pigmentation, the organic pigment particles cause strong dry aggregation, and it often takes a lot of energy and time to loosen and disperse the aggregation. In addition, it is often difficult to disperse finely and uniformly, and it is often difficult to obtain an organic pigment dispersion having high brightness, sharpness, and coloring power.
微細な有機顔料粒子を得る顔料化工程に、ボールミル、アトライタ、振動ミル等による乾式粉砕法を用いることもできる。乾式粉砕法は乾燥工程を必要とせず、乾燥凝集の懸念がないという点で有用な方法であるが、粉砕工程において有機顔料粒子が凝集してしまうことが多く、この凝集をほぐして分散させるのに、多大なエネルギーと時間を要する。 A dry pulverization method using a ball mill, an attritor, a vibration mill, or the like can also be used in the pigmentation step for obtaining fine organic pigment particles. The dry pulverization method does not require a drying step and is a useful method in that there is no concern about dry aggregation. However, organic pigment particles often aggregate in the pulverization step, and this aggregation is loosened and dispersed. It takes a lot of energy and time.
乾式粉砕法により微細化した有機顔料粒子を、油性ビヒクル中で顔料化し分散体を得る技術が、特許文献1に公開されている。
本発明は、多大なエネルギーと時間を要することがなく、また微細で均一に分散させることができるフタロシアニンブルーまたはフタロシアニングリーン顔料分散体の製造方法を提供する。 The present invention provides a method for producing a phthalocyanine blue or phthalocyanine green pigment dispersion that can be dispersed finely and uniformly without requiring much energy and time.
本発明は、乾燥工程や粉砕工程において顔料が凝集することのないフタロシアニンブルーまたはフタロシアニングリーン顔料分散体の製造方法を提供する。 The present invention provides a method for producing a phthalocyanine blue or phthalocyanine green pigment dispersion in which pigments do not aggregate in a drying step or a pulverizing step.
本発明者らは、鋭意努力した結果、従来技術の問題点を解消し、上記の課題を解決する発明を得るに至った。
すなわち本発明は、フタロシアニンブルーまたはフタロシアニングリーンから選ばれたアスペクト比が3以上であり、かつ長径の平均粒子径が150nmより大きい針状の粗製顔料を、樹脂または樹脂と有機溶剤の混合物の存在下に、2本ロールを使用して、長径の平均粒子径が10〜100nm未満である微細顔料に摩砕しながら分散させることを特徴とする顔料分散体の製造方法に関する。
As a result of diligent efforts, the present inventors have solved the problems of the prior art and have obtained an invention that solves the above problems.
That is, the present invention provides a needle-like crude pigment having an aspect ratio selected from phthalocyanine blue or phthalocyanine green of 3 or more and an average particle diameter of longer than 150 nm in the presence of a resin or a mixture of a resin and an organic solvent. Further, the present invention relates to a method for producing a pigment dispersion characterized by using two rolls to disperse the fine pigment having a long average particle diameter of less than 10 to 100 nm while being ground.
本発明の方法により製造されたフタロシアニンブルーまたはフタロシアニングリーン分散体は、上記の優れた特徴により、インキ、塗料、プラスチック等の着色剤としての用途の他に、カラーフィルタ用レジストインキ、インキジェット用インキに用いることで、良好な特性を実現することができる。 The phthalocyanine blue or phthalocyanine green dispersion produced by the method of the present invention is not only used as a colorant for inks, paints, plastics, etc., but also for color filter resist inks and ink jet inks due to the above-mentioned excellent characteristics. By using it, good characteristics can be realized.
本発明おいては、摩砕により針状粒子が粉砕される際、粒子の破壊によって露出した活性面に、迅速かつ効果的にビヒクルが吸着することで、微細なフタロシアニンブルーまたはフタロシアニングリーン顔料粒子を凝集させることなく安定に分散させることが可能になる。 In the present invention, when the acicular particles are pulverized by grinding, the vehicle is quickly and effectively adsorbed on the active surface exposed by the destruction of the particles, so that the fine phthalocyanine blue or phthalocyanine green pigment particles are obtained. It becomes possible to disperse stably without agglomeration.
また、分散時の摩砕により得られる微細なフタロシアニンブルーまたはフタロシアニングリーン顔料粒子の大部分は、ソルトミリング法等の従来の顔料化法で得られるアスペクト比が2以下の球状、角状、米粒状ではなく、多くの粒子は、微細でありながらアスペクト比が2〜5程度の細長い形状を有している。
このような微細でかつ細長い形状の粒子は、アスペクト比が2以下の粗製顔料を用いたのでは、本発明の方法によっても得ることはできず、アスペクト比が3以上の針状の粗製顔料を用いることで、得ることができる。
In addition, most of the fine phthalocyanine blue or phthalocyanine green pigment particles obtained by grinding at the time of dispersion are spherical, square, and rice grains having an aspect ratio of 2 or less obtained by a conventional pigmentation method such as a salt milling method. Rather, many particles have an elongated shape with an aspect ratio of about 2 to 5 while being fine.
Such fine and elongated particles cannot be obtained by the method of the present invention when a crude pigment having an aspect ratio of 2 or less is used, and a needle-like crude pigment having an aspect ratio of 3 or more is obtained. It can be obtained by using.
本発明においては、このように従来の顔料化法で製造されたフタロシアニンブルーまたはフタロシアニングリーン顔料粒子とは異なる、微細でかつ細長い形状の顔料粒子が、ビヒクル中に安定に分散されていることで、分散体に高い明度、着色力、安定した粘度特性をもたらすことができる。 In the present invention, fine and elongated pigment particles different from phthalocyanine blue or phthalocyanine green pigment particles produced by the conventional pigmentation method are stably dispersed in the vehicle. The dispersion can be provided with high brightness, tinting strength, and stable viscosity characteristics.
本発明により、高い明度、鮮明性、着色力および安定した粘度特性を有するフタロシアニンブルーまたはフタロシアニングリーン顔料分散体が得られる。 According to the present invention, a phthalocyanine blue or phthalocyanine green pigment dispersion having high brightness, sharpness, coloring power and stable viscosity characteristics can be obtained.
本発明において使用する、アスペクト比が3以上で、長径の平均粒子径が100nmより大きい針状の粗製フタロシアニンブルーまたはフタロシアニングリーン顔料としては、特に制限はないが、C.I.ピグメントブルー15:6、C.I.ピグメントグリーン36、C.I.ピグメントグリーン7を用いると、良好な結果が得られる。 また、必要に応じて2種類以上の顔料を混合して使用してもよい。 The acicular crude phthalocyanine blue or phthalocyanine green pigment used in the present invention has an aspect ratio of 3 or more and a long average particle diameter of more than 100 nm is not particularly limited. I. Pigment blue 15: 6, C.I. I. Pigment green 36, C.I. I. Good results are obtained when CI Pigment Green 7 is used. Moreover, you may mix and use 2 or more types of pigments as needed.
本発明において、2本ロールを使用する他に、必要に応じて他の装置による摩砕および分散工程を合わせて行うことで、顔料分散体を製造してもよい。他の摩砕および分散工程に用いる装置については、特に制限はないが、摩砕工程においては、2本ロールと同様に、強力な衝撃力、剪断力で、針状の粗製有機顔料粒子を効率良く粉砕し、微細化できることが好ましく、分散工程においては、摩砕による針状粒子の破壊によって露出した活性面に、迅速かつ効果的にビヒクルを吸着させることができることが好ましい。 In the present invention, in addition to using two rolls, a pigment dispersion may be produced by performing a trituration and dispersion process using another apparatus as necessary. There are no particular restrictions on the apparatus used for the other milling and dispersing processes, but in the milling process, as in the case of the two rolls, the needle-like crude organic pigment particles are efficiently used with a strong impact force and shearing force. It is preferable that the particles can be finely pulverized and refined. In the dispersion step, it is preferable that the vehicle can be adsorbed quickly and effectively on the active surface exposed by the destruction of the needle-like particles by grinding.
また、必要に応じて減圧状態や加圧状態、または窒素ガスなどの不活性ガスを充填した状態で、摩砕および分散工程を行ってもよい。 Moreover, you may perform a grinding | pulverization and dispersion | distribution process in the state filled with inert gas, such as a pressure reduction state, a pressurization state, or nitrogen gas as needed.
本発明において、2本ロール等で摩砕および分散工程を行う際に使用する有機溶剤としては、特に制限はないが、ベンゼン、トルエン、キシレン、エチルベンゼン、クロロベンゼン、ニトロベンゼン、アニリン、ピリジン、キノリン、テトラヒドロフラン、ジオキサン、メタノール、エタノール、イソプロパノール、n−プロパノール、イソブタノール、n−ブタノール、エチレングリコール、ジエチレングリコール、ジエチレングリコールモノメチルエーテール、ジエチレングリコールモノエチルエーテール、ジエチレングリコールモノブチルエーテール、プロピレングリコール、プロピレンゴリコールモノメチルエーテルアセテート、酢酸エチル、酢酸イソプロピル、酢酸ブチル、ヘキサン、ヘプタン、オクタン、ノナン、デカン、ウンデカン、ドデカン、シクロヘキサン、メチルシクロヘササン、ハロゲン化炭化水素、アセトン、メチルエチルケトン、メチルイソブチルケトン、シクロヘキサノン、ジメチルホルムアミド、ジメチルスルホキシド、N−メチルピロリドン等を挙げることができる。また必要に応じて2種類以上の溶剤を混合して使用してもよい。 In the present invention, the organic solvent used when performing the grinding and dispersing step with two rolls is not particularly limited, but benzene, toluene, xylene, ethylbenzene, chlorobenzene, nitrobenzene, aniline, pyridine, quinoline, tetrahydrofuran. , Dioxane, methanol, ethanol, isopropanol, n-propanol, isobutanol, n-butanol, ethylene glycol, diethylene glycol, diethylene glycol monomethyl ether, diethylene glycol monoethyl ether, diethylene glycol monobutyl ether, propylene glycol, propylene glycol glycol monomethyl ether Acetate, ethyl acetate, isopropyl acetate, butyl acetate, hexane, heptane, octane, nonane, decane, un Kang, dodecane, cyclohexane, methylcyclopentane f Sasan, halogenated hydrocarbons, acetone, methyl ethyl ketone, methyl isobutyl ketone, cyclohexanone, dimethylformamide, dimethyl sulfoxide, N- methylpyrrolidone. Moreover, you may mix and use 2 or more types of solvents as needed.
本発明において、2本ロール等で摩砕および分散工程を行う際に使用する有機溶剤の沸点は、特に制限はないが、50〜170℃であることが好ましい。 In the present invention, the boiling point of the organic solvent used when performing the grinding and dispersing step with two rolls or the like is not particularly limited, but is preferably 50 to 170 ° C.
本発明において、2本ロール等で摩砕および分散工程を行う際に使用する樹脂としては、特に制限はないが、ロジン、ロジン誘導体、ロジン変性マレイン酸樹脂、ロジン変性フェノール樹脂、ゴム誘導体、タンパク誘導体、塩素化ポリエチレン、塩素化ポリプロピレン、ポリ塩化ビニル、ポリ酢酸ビニル、エポキシ樹脂、アクリル樹脂、マレイン酸樹脂、スチレン樹脂、スチレン−マレイン酸共重合樹脂、ブチラール樹脂、ポリエステル樹脂、メラミン樹脂、フェノール樹脂、ポリウレタン樹脂、ポリアマイド樹脂、ポリイミド樹脂、アルキッド樹脂、ゴム系樹脂、セルロース類、ベンゾグアナミン樹脂、尿素樹脂、および上記樹脂のオリゴマー、モノマー類を挙げることができる。 In the present invention, there are no particular restrictions on the resin used when performing the grinding and dispersing process with two rolls or the like, but rosin, rosin derivatives, rosin-modified maleic acid resins, rosin-modified phenolic resins, rubber derivatives, proteins Derivatives, chlorinated polyethylene, chlorinated polypropylene, polyvinyl chloride, polyvinyl acetate, epoxy resin, acrylic resin, maleic acid resin, styrene resin, styrene-maleic acid copolymer resin, butyral resin, polyester resin, melamine resin, phenol resin , Polyurethane resins, polyamide resins, polyimide resins, alkyd resins, rubber resins, celluloses, benzoguanamine resins, urea resins, and oligomers and monomers of the above resins.
本発明において、2本ロール等で摩砕および分散工程を行う際に使用する樹脂の添加量は、特に制限はないが、質量部で顔料100部に対して、10〜90部が好ましい。 In the present invention, the addition amount of the resin used when performing the grinding and dispersing step with two rolls or the like is not particularly limited, but is preferably 10 to 90 parts by weight with respect to 100 parts of the pigment.
本発明において、2本ロール等で摩砕および分散工程を行う際に使用する樹脂の軟化点については、特に制限はないが、40〜180℃であることが好ましい。 In the present invention, the softening point of the resin used when performing the grinding and dispersing process with two rolls or the like is not particularly limited, but is preferably 40 to 180 ° C.
本発明においては、2本ロール等で摩砕および分散を行う工程前または工程中に、顔料粒子の微細化を促進する目的や、顔料の結晶転位による他の結晶型の生成を防止する目的で、顔料誘導体を添加してもよい。添加する顔料誘導体としては、特に制限はないが、摩砕および分散させたい顔料と同じ骨格を有するものであることが好ましく、さらに置換基として、スルホン酸基およびスルホン酸の造塩基、スルホン酸アミド基、フタルイミドメチル基を有するものがさらに好ましい。 In the present invention, before or during the process of grinding and dispersing with two rolls or the like, for the purpose of promoting the refinement of pigment particles, or for the purpose of preventing the formation of other crystal forms due to the crystal dislocation of the pigment. A pigment derivative may be added. The pigment derivative to be added is not particularly limited, but preferably has the same skeleton as the pigment to be ground and dispersed. Further, as a substituent, a sulfonic acid group and a sulfonic acid base, a sulfonic acid amide are used. And those having a phthalimidomethyl group are more preferred.
本発明においては、2本ロール等で摩砕および分散を行う工程前または工程中に、必要に応じて界面活性剤等の添加剤を添加してもよい。 In the present invention, an additive such as a surfactant may be added as necessary before or during the step of grinding and dispersing with two rolls.
本発明においては、2本ロール等で、摩砕および分散を行う工程の後に、必要に応じてさらに追加分散工程を行うことで、顔料分散体を製造してもよい。この追加分散工程においても、必要に応じて有機溶剤、樹脂、顔料誘導体、界面活性剤等の添加剤を添加してもよい。 In the present invention, a pigment dispersion may be produced by performing an additional dispersion step as necessary after the step of grinding and dispersing with two rolls or the like. In this additional dispersion step, additives such as an organic solvent, a resin, a pigment derivative, and a surfactant may be added as necessary.
追加分散工程に用いる装置については、特に制限はないが、ビーズミル等の撹拌型の分散機を用いることができる。 Although there is no restriction | limiting in particular about the apparatus used for an additional dispersion | distribution process, Stirring type dispersers, such as a bead mill, can be used.
次に本発明を、実施例および比較例により具体的に説明するが、本発明は以下の実施例に限定されるものではない。なお、実施例における部は、質量部を示す。 EXAMPLES Next, although an Example and a comparative example demonstrate this invention concretely, this invention is not limited to a following example. In addition, the part in an Example shows a mass part.
アスペクト比が3〜4で、長径の平均粒子径が200〜300nmの針状の粗製のC.I.ピグメントグリーン36顔料70部とアクリル系樹脂30部からなる混合物を、あらかじめ十分に混合した後、2本ロールミルに通して練肉し、シート状物とした。このシート状物を数枚に折り畳み、再度2本ロールミルに通した。
この工程を20回繰り返した後、粉砕機で粉砕してカラーチップを得た。
得られたカラーチップ25部と塗料用溶剤40部を混合してビーズミルで分散した後、塗料用溶剤35部を添加して追加分散し、液状の顔料分散体組成物を得た。
この液状顔料分散体組成物をガラス基板に塗布し、オーブンにて乾燥させ、塗膜を得た。
得られた塗膜の光沢、ヘイズ値と明度を評価した。また液状顔料分散体組成物の粘度を評価した。
評価結果を表1に示した。
A needle-like crude C.I. having an aspect ratio of 3 to 4 and an average particle diameter of a major axis of 200 to 300 nm I. A mixture of 70 parts of Pigment Green 36 pigment and 30 parts of acrylic resin was mixed well in advance, and then passed through a two-roll mill and kneaded to obtain a sheet. The sheet was folded into several sheets and passed through a two-roll mill again.
After repeating this process 20 times, it was pulverized by a pulverizer to obtain a color chip.
After 25 parts of the obtained color chip and 40 parts of the coating solvent were mixed and dispersed by a bead mill, 35 parts of the coating solvent was added and further dispersed to obtain a liquid pigment dispersion composition.
This liquid pigment dispersion composition was applied to a glass substrate and dried in an oven to obtain a coating film.
The gloss, haze value, and brightness of the obtained coating film were evaluated. Further, the viscosity of the liquid pigment dispersion composition was evaluated.
The evaluation results are shown in Table 1.
[比較例1]
実施例1で用いた針状の粗製のC.I.ピグメントグリーン36顔料17.5部とアクリル系樹脂7.5部、塗料用溶剤40部を混合しビーズミルで分散した後、塗料用溶剤35部を添加して追加分散し、液状の顔料分散体組成物を得た。
この液状顔料分散体組成物を実施例1と同様の方法により、光沢、ヘイズ値、明度と粘度を評価した。評価結果を表1に示した。
[Comparative Example 1]
The acicular crude C.I. used in Example 1 I. Pigment Green 36 pigment 17.5 parts, acrylic resin 7.5 parts and paint solvent 40 parts are mixed and dispersed in a bead mill, then paint solvent 35 parts is added and dispersed further to form a liquid pigment dispersion composition I got a thing.
The liquid pigment dispersion composition was evaluated for gloss, haze value, brightness and viscosity in the same manner as in Example 1. The evaluation results are shown in Table 1.
[比較例2]
実施例1で用いた針状の粗製のC.I.ピグメントグリーン36顔料をソルトミリング法により微細化し、得られた微細化顔料を実施例1と同様の方法で、2本ロールミル分散とビーズミル分散を行って液状の顔料分散体組成物を得た。
この液状顔料分散体組成物を実施例1と同様の方法により、光沢、ヘイズ値、明度と粘度を評価した。評価結果を表1に示した。
[Comparative Example 2]
The acicular crude C.I. used in Example 1 I. Pigment Green 36 pigment was refined by a salt milling method, and the resulting refined pigment was subjected to two-roll mill dispersion and bead mill dispersion in the same manner as in Example 1 to obtain a liquid pigment dispersion composition.
The liquid pigment dispersion composition was evaluated for gloss, haze value, brightness and viscosity in the same manner as in Example 1. The evaluation results are shown in Table 1.
アスペクト比が4〜5で、長径の平均粒子径が300〜600nmの 針状の粗製のC.I.ピグメントブルー15:6顔料70部とアクリル系樹脂30部からなる混合物を、あらかじめ十分に混合した後、2本ロールミルに通して練肉し、シート状物とした。このシート状物を数枚に折り畳み、再度2本ロールミルに通した。
この工程を20回繰り返した後、粉砕機で粉砕してカラーチップを得た。
得られたカラーチップ25部と塗料用溶剤40部を混合してビーズミルで分散した後、塗料用溶剤35部を添加して追加分散し、液状の顔料分散体組成物を得た。
この液状顔料分散体組成物をガラス基板に塗布し、オーブンにて乾燥させ、塗膜を得た。
得られた塗膜の光沢、ヘイズ値と明度を評価した。また液状顔料分散体組成物の粘度を評価した。
評価結果を表2に示した。
A needle-like crude C.I. having an aspect ratio of 4 to 5 and an average particle diameter of major axis of 300 to 600 nm. I. A mixture of 70 parts of Pigment Blue 15: 6 pigment and 30 parts of acrylic resin was mixed well in advance, and then kneaded through a two-roll mill to obtain a sheet. The sheet was folded into several sheets and passed through a two-roll mill again.
After repeating this process 20 times, it was pulverized by a pulverizer to obtain a color chip.
After 25 parts of the obtained color chip and 40 parts of the coating solvent were mixed and dispersed by a bead mill, 35 parts of the coating solvent was added and further dispersed to obtain a liquid pigment dispersion composition.
This liquid pigment dispersion composition was applied to a glass substrate and dried in an oven to obtain a coating film.
The gloss, haze value, and brightness of the obtained coating film were evaluated. Further, the viscosity of the liquid pigment dispersion composition was evaluated.
The evaluation results are shown in Table 2.
[比較例3]
実施例1で用いた針状の粗製のC.I.ピグメントブルー15:6顔料17.5部とアクリル系樹脂7.5部、塗料用溶剤40部を混合しビーズミルで分散した後、塗料用溶剤35部を添加して追加分散し、液状の顔料分散体組成物を得た。
この液状顔料分散体組成物を実施例2と同様の方法により、光沢、ヘイズ値、明度と粘度を評価した。評価結果を表2に示した。
[Comparative Example 3]
The acicular crude C.I. used in Example 1 I. Pigment Blue 15: 6 17.5 parts of pigment, 7.5 parts of acrylic resin, and 40 parts of solvent for paint are mixed and dispersed with a bead mill. A body composition was obtained.
The liquid pigment dispersion composition was evaluated for gloss, haze value, brightness and viscosity in the same manner as in Example 2. The evaluation results are shown in Table 2.
[比較例4]
実施例2で用いた針状の粗製のC.I.ピグメントブルー15:6顔料をソルトミリング法により微細化し、得られた微細化顔料を実施例2と同様の方法で、2本ロールミル分散とビーズミル分散を行って液状の顔料分散体組成物を得た。
この液状顔料分散体組成物を実施例2と同様の方法により、光沢、ヘイズ値、明度と粘度を評価した。評価結果を表2に示した。
[Comparative Example 4]
Needle-like crude C.I. used in Example 2 I. Pigment Blue 15: 6 pigment was refined by a salt milling method, and the resulting refined pigment was subjected to two roll mill dispersion and bead mill dispersion in the same manner as in Example 2 to obtain a liquid pigment dispersion composition. .
The liquid pigment dispersion composition was evaluated for gloss, haze value, brightness and viscosity in the same manner as in Example 2. The evaluation results are shown in Table 2.
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JP2007002077A (en) * | 2005-06-23 | 2007-01-11 | Sumika Color Kk | Method for producing organic pigment |
JP2013103956A (en) * | 2011-11-10 | 2013-05-30 | Nippon Shokubai Co Ltd | Organic crystal |
WO2020075568A1 (en) * | 2018-10-10 | 2020-04-16 | 富士フイルム株式会社 | Coloring composition, film, method for producing color filter, color filter, solid state imaging device and image display device |
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JP2007002077A (en) * | 2005-06-23 | 2007-01-11 | Sumika Color Kk | Method for producing organic pigment |
JP2013103956A (en) * | 2011-11-10 | 2013-05-30 | Nippon Shokubai Co Ltd | Organic crystal |
WO2020075568A1 (en) * | 2018-10-10 | 2020-04-16 | 富士フイルム株式会社 | Coloring composition, film, method for producing color filter, color filter, solid state imaging device and image display device |
JPWO2020075568A1 (en) * | 2018-10-10 | 2021-09-16 | 富士フイルム株式会社 | Coloring composition, film, manufacturing method of color filter, color filter, solid-state image sensor and image display device |
JP7284184B2 (en) | 2018-10-10 | 2023-05-30 | 富士フイルム株式会社 | Coloring composition, film, method for producing color filter, color filter, solid-state imaging device, and image display device |
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