Abstract:
There is provided a biocompatible member comprising: a base material; and a film provided on the base material, wherein the biocompatible member includes: 1) a compound having a phosphorylcholine group, and 2) a polymer of a polymerizable compound, or an oligomer or polymer compound, provided that 2) the polymer of a polymerizable compound, or the oligomer or polymer compound does not have a phosphorylcholine group, the film is a composition gradient film in which the composition of 1) and 2) continuously varies in such a manner that the proportion of 1) increases and the proportion of 2) decreases from the side closest to the base material to the side farthest from the base material along a film thickness direction.
Abstract:
A forming method of a conductive pattern including a base material and a pattern of a composition gradient layer in which the composition continuously changes from a metal to a resin in a thickness direction from the farthest side to the base material toward the nearest side to the base material, includes: ejecting at least two kinds of ink compositions of an ink composition containing a metal and an ink composition containing a compound capable of being cured with active energy ray, or a polymer or oligomer, onto the base material by an inkjet method to fabricate the composition gradient layer.
Abstract:
The present invention provides a method for manufacturing a metal film material, the method including: applying an ink composition by discharging the ink composition onto a substrate via an inkjet method, the ink composition containing at least one first monomer having at least one group selected from the group consisting of a cyano group, an alkyloxy group, an amino group, a pyridine residue, a pyrrolidone residue, an imidazole residue, an alkylsulfanyl group, or a cyclic ether residue, at least one second monomer that has polyfunctionality, and at least one polymerization initiator, a total monomer content in the ink composition being 85% by mass or greater; forming a cured film by carrying out at least one of light exposure or heating of the ink composition that has been applied; applying a plating catalyst or a precursor thereof to the cured film; and a plating processing step of performing plating with respect to the plating catalyst or precursor thereof that has been applied.