Antimicrobial and antiviral polymeric master batch, processes for producing polymeric material therefrom and products produced therefrom
A polymeric master batch for preparing an antimicrobal and antifungal and antiviral polymeric material comprising a slurry of thermoplastic resin, an antimicrobal and antifungal and antiviral agent consisting essentially of water insoluble particles of ionic copper oxide, a polymeric wax and an agent for occupying the charge of the ionic copper oxide.
1. A process of preparing an antimicrobial, antifungal and antiviral polymeric material, comprising:
preparing a master batch composition, wherein the master batch composition is in the form of an extruded solid and the master batch composition consists essentially of:
about 4% to about 83% of a thermoplastic resin;
about 10% to about 60% of an antimicrobial, antifungal and antiviral agent consisting essentially of discrete water insoluble particles of cationic copper oxide;
about 1% to about 30% of a polymeric wax; and
about 1% to about 6% of an agent for occupying the charge of said ionic copper oxide,
wherein wt % is based on the total weight of the composition; and
combining the master batch composition with a thermoplastic composition to form a combined thermoplastic composition; and
extruding the combined thermoplastic composition to form an antimicrobial, antifungal and antiviral polymeric material,
wherein discrete water insoluble particles of ionic copper oxide that release Cu ++ are exposed and protrude from a surface of the polymeric material.
2. A process of preparing an antimicrobial, antifungal and antiviral polymeric material, comprising:
preparing a master batch composition, wherein the master batch composition is in the form of an extruded solid and the master batch composition consists essentially of:
about 4% to about 83% of a thermoplastic resin;
about 10% to about 60% of an antimicrobial, antifungal and antiviral agent consisting essentially of discrete water insoluble ionic copper oxide particles of CuO and Cu 2 O;
about 1% to about 30% of a polymeric wax; and
about 1% to about 6% of an agent for occupying the charge of said ionic copper oxide,
wherein wt % is based on the total weight of the composition; and
combining the master batch composition with a thermoplastic composition to form a combined thermoplastic composition; and
extruding the combined thermoplastic composition to form an antimicrobial, antifungal and antiviral polymeric material,
wherein discrete water insoluble particles of ionic copper oxide that release Cu ++ are exposed and protrude from a surface of the polymeric material.
3. The process of claim 1 , wherein the discrete water insoluble particles of ionic copper oxide are characterized by a size between 0.2 microns and 10 microns.
4. The process of claim 1 , wherein the combined thermoplastic composition comprises the discrete water insoluble particles of ionic copper oxide in a range from 0.25 wt % and 5 wt %, wherein wt % is based on the total weight of the polymeric material.
5. The process of claim 1 , wherein the polymeric wax is selected from the group consisting of homopolymers, oxidized homopolymers, high density oxidized homopolymers and co-polymers of polyethylene, polypropylene, ionomer waxes, micronized polyolefin waxes, and co-polymers of ethylene-acrylic acid, ethylene-vinyl acetate, and a combination of any of the foregoing.
6. The process of claim 1 , wherein the polymeric wax is selected from the group consisting of homopolymers and co-polymers of polyethylene, polypropylene, ionomer waxes, and a combination of any of the foregoing.
7. The process of claim 1 , wherein the combined thermoplastic composition is extrudable without a plating out of the water insoluble particles of ionic copper oxide on metal surfaces of an extrusion apparatus.
8. The process of claim 1 , wherein the agent for occupying the charge of said ionic copper oxide is selected from the group consisting of a metal deactivating phosphite, a phenolic antioxidant, potassium iodide, potassium bromide, calcium stearate, zinc stearate, aluminum stearate, and a combination of any of the foregoing.
9. The process of claim 1 , wherein the combined thermoplastic composition comprises a metal deactivator.