BY-O-COAT AC 99 is a bio-based antimicrobial nanocomposite silica derived from rice husks, formulated to provide permanent and long-lasting protection against microbes. Incorporating CuSiO₂, this advanced material is designed for controlled biocide and virucide release, offering extended antimicrobial efficacy and improving hygiene in a wide range of applications.
Key Features:
Bio-based and sustainable, sourced from rice husks
Nanocomposite silica with CuSiO₂ for effective antimicrobial activity
Provides long-lasting, controlled release of biocides and virucides
Enhances hygiene and reduces microbial transmission
Suitable for incorporation into anti-microbial coatings, polymers, and composites
Typical Applications:
Anti-microbial coatings for surfaces in healthcare, food processing, and public areas
Polymers, rubbers, and composites requiring prolonged hygiene protection
Protective coatings for industrial, consumer, and medical applications
Formulations designed for controlled biocide/virucide release over extended periods
BY-O-COAT AC 99 is a bio-based antimicrobial nanocomposite silica derived from rice husks, formulated to provide permanent and long-lasting protection against microbes. Incorporating CuSiO₂, this advanced material is designed for controlled biocide and virucide release, offering extended antimicrobial efficacy and improving hygiene in a wide range of applications.
Key Features:
Bio-based and sustainable, sourced from rice husks
Nanocomposite silica with CuSiO₂ for effective antimicrobial activity
Provides long-lasting, controlled release of biocides and virucides
Enhances hygiene and reduces microbial transmission
Suitable for incorporation into anti-microbial coatings, polymers, and composites
Typical Applications:
Anti-microbial coatings for surfaces in healthcare, food processing, and public areas
Polymers, rubbers, and composites requiring prolonged hygiene protection
Protective coatings for industrial, consumer, and medical applications
Formulations designed for controlled biocide/virucide release over extended periods