Patent classifications
A01N33/08
BIOCIDE COMPOSITION AND METHODS OF USE
The invention is directed to a biocidal composition formed by a reaction or combination of electrolyzed water and an amine, and methods for using same to kill or control microorganisms, such as viruses, bacteria, fungi and algae.
INSECTICIDAL COMPOSITIONS
Insecticidal compositions include a combination of at least one pyrethroid insecticide, at least one additional insecticide, at least one N,N-dialkyl-C.sub.8-C.sub.20 alkylcarboxamide. Also disclosed are a process of preparing the insecticidal composition and a method of controlling insects with the insecticidal composition.
INSECTICIDAL COMPOSITIONS
Insecticidal compositions include a combination of at least one pyrethroid insecticide, at least one additional insecticide, at least one N,N-dialkyl-C.sub.8-C.sub.20 alkylcarboxamide. Also disclosed are a process of preparing the insecticidal composition and a method of controlling insects with the insecticidal composition.
ANTIBACTERIAL HYDROPHILIC COMPOUND
The present disclosure provides an antibacterial hydrophilic compound. The antibacterial hydrophilic compound may react, induced by light through a hydrogen abstraction group in the structural formula thereof, with a C—H group and thus bind to a surface of a material having the C—H group (for example, chemical fibers such as polyester, chinlon, and the like; plastics, rubbers, and other similar materials), which can impart a durable antibacterial activity and hydrophilicity to the material. The antibacterial hydrophilic compound has a relatively strong binding force to the surface of the material without damaging the mechanical properties of the raw material. The present disclosure also provides a modified material that is modified by the antibacterial hydrophilic compound.
ANTIBACTERIAL HYDROPHILIC COMPOUND
The present disclosure provides an antibacterial hydrophilic compound. The antibacterial hydrophilic compound may react, induced by light through a hydrogen abstraction group in the structural formula thereof, with a C—H group and thus bind to a surface of a material having the C—H group (for example, chemical fibers such as polyester, chinlon, and the like; plastics, rubbers, and other similar materials), which can impart a durable antibacterial activity and hydrophilicity to the material. The antibacterial hydrophilic compound has a relatively strong binding force to the surface of the material without damaging the mechanical properties of the raw material. The present disclosure also provides a modified material that is modified by the antibacterial hydrophilic compound.
Methods and compounds for increasing virucidal efficacy in hydroalcoholic systems
A topical sanitizing composition for reducing the concentration of non-enveloped viruses on the skin is provided. The topical sanitizing composition includes one or more pH adjusters, at least one carbomer, and at least about 50 wt. % of one or more C.sub.1-8 alcohols. The sanitizing composition with pH adjuster and carbomer is able to achieve at least a 3.0 log reduction in the concentration of the non-enveloped virus and in some cases passes the EN 14476 standard.
Methods and compounds for increasing virucidal efficacy in hydroalcoholic systems
A topical sanitizing composition for reducing the concentration of non-enveloped viruses on the skin is provided. The topical sanitizing composition includes one or more pH adjusters, at least one carbomer, and at least about 50 wt. % of one or more C.sub.1-8 alcohols. The sanitizing composition with pH adjuster and carbomer is able to achieve at least a 3.0 log reduction in the concentration of the non-enveloped virus and in some cases passes the EN 14476 standard.
POLYMER DISPERSION HAVING IMPROVED ADHESION AND WETTABILITY AND METHODS FOR THE SAME
An antimicrobial coating composition is disclosed. The antimicrobial coating composition also includes a polymer having a plurality of alkene units and a plurality of macroCTA polymer units. The composition also includes one or more reactive silanes, one or more wetting agents, and one or more solvents. A method for applying an antimicrobial coating composition is disclosed. The method for applying an antimicrobial coating composition may include contacting a polymer, one or more wetting agents, one or more solvents, and one or more reactive silanes with one another to prepare an antimicrobial coating composition, homogenizing the antimicrobial coating composition, applying the antimicrobial coating composition to a substrate, and allowing the antimicrobial coating composition to dry at ambient conditions.
POLYMER DISPERSION HAVING IMPROVED ADHESION AND WETTABILITY AND METHODS FOR THE SAME
An antimicrobial coating composition is disclosed. The antimicrobial coating composition also includes a polymer having a plurality of alkene units and a plurality of macroCTA polymer units. The composition also includes one or more reactive silanes, one or more wetting agents, and one or more solvents. A method for applying an antimicrobial coating composition is disclosed. The method for applying an antimicrobial coating composition may include contacting a polymer, one or more wetting agents, one or more solvents, and one or more reactive silanes with one another to prepare an antimicrobial coating composition, homogenizing the antimicrobial coating composition, applying the antimicrobial coating composition to a substrate, and allowing the antimicrobial coating composition to dry at ambient conditions.
ENGINEERED ANTIMICROBIAL AMPHIPHILIC PEPTIDES AND METHODS OF USE
Disclosed herein are novel peptides that can comprise antimicrobial, antiviral, antifungal or antitumor activity when administered to a subject.