Projekt
SUstainable nanoPaRticles Enabled antiMicrobial surfacE coatings
The catastrophic ongoing pandemic has attracted our attention towards the spread of harmful pathogens facilitated by high traffic surfaces, highlighting the importance and urgency of an economically and environmentally sustainable solution for antimicrobial surface as a potential strategy to mitigate the spread of dis…
The catastrophic ongoing pandemic has attracted our attention towards the spread of harmful pathogens facilitated by high traffic surfaces, highlighting the importance and urgency of an economically and environmentally sustainable solution for antimicrobial surface as a potential strategy to mitigate the spread of disease outbreaks.
Nanoparticle (NP) filled coatings, with recognised effectiveness against bacteria, viruses, and fungi, are valuable candidates for developing antimicrobial surface and minimising the surface adhesion of pathogens. However, due to the many technical challenges, including difficulty to develop nanocoatings with a long-term antimicrobial capability, durability under real conditions and safety assurance, their application at industrial level is still limited.
The SUPREME consortium will develop a platform of efficient and multifunctional antimicrobial nanocoatings, building upon bespoke TiO2 nanoparticles that have demonstrated an exceptional antimicrobial ability at lab scale (TRL3). Two sustainable routes: 1) customised core/shell and advanced functional nanoparticles and 2) hybrid fibre-nanoparticles (using sustainable bio-based cellulose materials and nanoparticles) will be pursued. Bearing in mind the specific requirements of individual applications, the SUPREME consortium will coordinate the antimicrobial testings to its effectiveness against a wide range of pathogens. The production of the SUPREME coating will follow a sustainable-by-design approach that considers both toxicity and environmental impact from outset to guarantee both market acceptance and sustainability of the overall process whilst having a robust safety assurance in place for human health. The scaling-up production of these sustainable materials and their validation according to the industrial requirements will enable to reach the TRL6 by the end of the project.
Themengebiete
- Gesundheit Gesundheit – Überblick über Forschungsprojekte, Patente und Akteure im TechnologieAtlas.
- Klima und Umwelt Klima und Umwelt – Überblick über Forschungsprojekte, Patente und Akteure im TechnologieAtlas.
Hochschulen
- ETHNICON METSOVION POLYTECHNION ETHNICON METSOVION POLYTECHNION – Hochschule bzw. Forschungseinrichtung mit Aktivitäten in Forschung und Inno…
- THE UNIVERSITY OF BIRMINGHAM THE UNIVERSITY OF BIRMINGHAM – Hochschule bzw. Forschungseinrichtung mit Aktivitäten in Forschung und Innovat…
- WAGENINGEN UNIVERSITY WAGENINGEN UNIVERSITY – Hochschule bzw. Forschungseinrichtung mit Aktivitäten in Forschung und Innovation.
- KATHOLIEKE UNIVERSITEIT LEUVEN KATHOLIEKE UNIVERSITEIT LEUVEN – Hochschule bzw. Forschungseinrichtung mit Aktivitäten in Forschung und Innov…
- NORGES TEKNISK-NATURVITENSKAPELIGE UNIVERSITET NTNU NORGES TEKNISK-NATURVITENSKAPELIGE UNIVERSITET NTNU – Hochschule bzw. Forschungseinrichtung mit Aktivitäten i…
Unternehmen
- PNO DIGITAL SRL PNO DIGITAL SRL – Unternehmen mit Aktivitäten in Forschung und Innovation.
- FIBERLEAN TECHNOLOGIES LIMITED FIBERLEAN TECHNOLOGIES LIMITED – Unternehmen mit Aktivitäten in Forschung und Innovation.
- MYLAR SPECIALTY FILMS UK LIMITED MYLAR SPECIALTY FILMS UK LIMITED – Unternehmen mit Aktivitäten in Forschung und Innovation.
- TRAFI CREATIVITA TESSILE SRL TRAFI CREATIVITA TESSILE SRL – Unternehmen mit Aktivitäten in Forschung und Innovation.
- Akzo Nobel Packaging Coatings Limited Akzo Nobel Packaging Coatings Limited – Unternehmen mit Aktivitäten in Forschung und Innovation.