Multi-layer coated porous materials and methods of making the same
View Patent ↗Multi-layer coated materials and methods of making them are disclosed. In a specific embodiment, a porous polymeric substrate is pre-activated and immersed in a polyelectrolyte solution to form a first layer having an electric charge and at least one functional group. The coated material is next immersed in a second solution of a material having an electric charge opposite of that of the first layer to provide a bi-layer coating. This process can be repeated to form multi-layer coatings on porous substrates.
1. A multi-layer coated material comprising a surface activated substrate, a first layer, and a second layer, wherein the surface activated substrate comprises a sintered porous polymeric material; the first layer comprises polyethylenimine molecules bound directly to a surface of the surface activated substrate through covalent bonds and electrostatic interactions, the polyethylenimine molecules comprising neutral amine functional groups and charged amine functional groups; and the second layer comprises polyelectrolyte molecules bound to the first layer through covalent bonds, electrostatic interactions, or combinations thereof.
2. The material of claim 1 , wherein the polymeric material comprises a polyolefin, polyester, polyurethane, polycarbonate, polyetheretherketone, poly(phenylene oxide), poly(ether sulfone), or nylon.
3. The material of claim 2 , wherein the polyolefin comprises ethylene vinyl acetate, ethylene methyl acrylate, polyethylene, polypropylene, ethylene-propylene rubber, ethylene-propylene-diene rubbers, poly(1-butene), polystyrene, poly(2-butene), poly(1-pentene), poly(2-pentene), poly(3-methyl-1-pentene), poly(4-methyl-1-pentene), 1,2-poly-1,3-butadiene, 1,4-poly-1,3-butadiene; polyisoprene, polychloroprene, poly(vinyl acetate), poly(vinylidene chloride), poly(vinylidene fluoride), poly(tetrafluoroethylene), or mixtures thereof.
4. The material of claim 1 , wherein the polyelectrolyte molecules of the second layer comprise poly(acrylic acid), a copolymer containing poly(acrylic acid), or a surfactant.
5. The material of claim 4 , wherein the polyelectrolyte molecules of the second layer comprise a fluorinated surfactant.
6. The material of claim 1 further comprising at least one additional layer of polyelectrolyte molecules bound to the second layer through covalent bonds, electrostatic interactions, or combinations thereof.
7. The material of claim 6 , wherein the polyelectrolyte molecules of the second layer comprise poly(acrylic acid) or a copolymer containing poly(acrylic acid), and the polyelectrolyte molecules of the at least one additional layer comprise polyethylenimine.
8. A multi-layer coated material comprising a surface activated substrate, a first layer, and a second layer, wherein the surface activated substrate comprises a sintered porous polymeric material; the first layer comprises polyethylenimine molecules bound directly to a surface of the surface activated substrate through covalent bonds and electrostatic interactions, the polyethylenimine molecules comprising neutral amine functional groups and charged amine functional groups; and the second layer comprises poly(acrylic acid) molecules bound to the first layer through covalent bonds, electrostatic interactions, or combinations thereof.
9. A multi-layer coated material comprising a surface activated substrate, a first layer, and a second layer, wherein the surface activated substrate comprises a sintered porous polymeric material; the first layer comprises polyethylenimine molecules bound directly to a surface of the surface activated substrate through covalent bonds and electrostatic interactions, the polyethylenimine molecules comprising neutral amine functional groups and charged amine functional groups; and the second layer comprises poly(acrylic acid) molecules bound directly to the first layer through covalent bonds and electrostatic interactions, the poly(acrylic acid) molecules comprising neutral carboxyl functional groups and charged carboxyl functional groups.