Ink composition, inkjet recording method, printed material, process for producing lithographic plate, and lithographic printing plate
An ink composition is provided that comprising a) a polymerizable compound, b) a polymerization initiator, and c) a coloring agent, the ink composition having a halogen ion content of no greater than 500 ppm. There is also provided an inkjet recording method that includes a step of discharging the ink composition onto a recording medium, and a step of irradiating the discharged ink composition with radiation so as to cure the ink composition.
1 . An ink composition comprising:
a) a polymerizable compound;
b) a polymerization initiator; and
c) a coloring agent;
the ink composition having a halogen ion content of no greater than 500 ppm.
2 . The ink composition according to claim 1 , wherein the polymerizable compound a) is cationically polymerizable, and the polymerization initiator b) is a photo-acid generator.
3 . The ink composition according to claim 2 , wherein the polymerizable compound a) is an oxetane compound and/or an oxirane compound.
4 . The ink composition according to claim 1 , wherein the coloring agent c) is a pigment or an oil-soluble dye.
5 . The ink composition according to claim 4 , wherein the oil-soluble dye has an oxidation potential of at least 1.0 V (vs SCE).
6 . The ink composition according to claim 1 , wherein the ink composition has a halogen ion content of no greater than 100 ppm.
7 . The ink composition according to claim 1 , wherein it is for inkjet recording.
8 . An inkjet recording method comprising:
(a) a step of discharging an ink composition onto a recording medium; and
(b) a step of curing the discharged ink composition by irradiating the ink composition with actinic radiation,
the ink composition being the ink composition according to claim 1 .
9 . The inkjet recording method according to claim 8 , wherein the actinic radiation is UV radiation having a peak light emission wavelength in the range of 350 to 420 nm and is emitted by a light-emitting diode for emitting UV radiation whose maximum illumination intensity on the surface of a recording medium is 10 to 2,000 mW/cm 2 .
10 . A printed material recorded by the inkjet recording method according to claim 9 .
11 . A process for producing a lithographic printing plate, the process comprising:
(a) a step of discharging the ink composition according to claim 1 onto a hydrophilic support; and
(b) a step of curing the discharged ink composition by irradiating the ink composition with actinic radiation so as to form a hydrophobic image on the hydrophilic support by curing the ink composition.
12 . A lithographic printing plate produced by the lithographic printing plate production process according to claim 11.