Phthalocyanine compound, ink, ink for ink-jet recording, ink-jet recording method and method for improving ozone gas resistance of coloured imaging material
A technology of compounds and inks, applied in the direction of copying/marking methods, chemical instruments and methods, inks, etc., to achieve the effect of good color and high resistance
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Embodiment 1
[0480] Deionized water was added to the following components to make 1 liter, and the resulting solution was stirred for 1 hour under heating at 30-40°C. Thereafter, the solution was adjusted to pH 9 with 10 mol / L KOH and filtered under pressure through a microfilter with an average pore size of 0.25 μm to obtain a cyan ink solution.
[0481] Composition of ink solution A
[0482] Phthalocyanine compound of the present invention (compound 102) 20.0g
[0483] Diethylene glycol 20g
[0484] Glycerin 120g
[0485] Diethylene glycol monobutyl ether 230g
[0486] 2-pyrrolidone 80g
[0487] Triethanolamine 17.9g
[0488] Benzotriazole 0.06g
[0489] Surfynol TG 8.5g
[0490] PROXEL XL2 1.8g
[0491] Ink solutions B-E were prepared in the same manner as the preparation of ink solution A, except that the phthalocyanine compounds shown in Table 1 below were changed, and comparative ink solutions 101, 102, and 103 were prepared using those comparative compounds.
[0492] When t...
Embodiment 2
[0531] Using the same ink prepared in Example 1, the image was printed on Inkjet Satin Photo Paper EX manufactured by Fuji Film Co., Ltd. by the same equipment as in Example 1, and the same way to evaluate. The same results as in Example 1 were obtained.
Embodiment 3
[0533] The same ink as that prepared in Example 1 was filled into a cartridge of an inkjet printer BJ-F850 (manufactured by CANON), and using the cartridge, printing was performed on glossy photo paper GP-301 produced by the same company An image was obtained and evaluated in the same manner as in Example 1. The same results as in Example 1 were obtained.
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