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Humic substance/metal-oxide multifunctional nanoparticles as advanced antibacterial-antimycotic agents and photocatalysts for the degradation of PLA microplastics under UVA/solar radiation.
Russo, Simone; Muscetta, Marica; Amato, Paola; Venezia, Virginia; Verrillo, Mariavittoria; Rega, Romina; Lettieri, Stefano; Cocca, Mariacristina; Marotta, Raffaele; Vitiello, Giuseppe.
Afiliación
  • Russo S; Department of Chemical, Materials and Production Engineering (DICMaPI), University of Naples Federico II, Piazzale V. Tecchio 80, 80125, Naples, Italy.
  • Muscetta M; Department of Chemical, Materials and Production Engineering (DICMaPI), University of Naples Federico II, Piazzale V. Tecchio 80, 80125, Naples, Italy. Electronic address: marica.muscetta@unina.it.
  • Amato P; Department of Chemical, Materials and Production Engineering (DICMaPI), University of Naples Federico II, Piazzale V. Tecchio 80, 80125, Naples, Italy.
  • Venezia V; Department of Chemical, Materials and Production Engineering (DICMaPI), University of Naples Federico II, Piazzale V. Tecchio 80, 80125, Naples, Italy; Department of Structures for Engineering and Architecture, University of Naples Federico II, Via Claudio 21, 80125, Naples, Italy.
  • Verrillo M; Department of Agricultural Science, University of Naples Federico II, via Università 100, 80055, Portici, Italy; Centro Interdipartimentale di Ricerca sulla Risonanza Magnetica Nucleare per l'Ambiente, l'Agro-Alimentare ed i Nuovi Materiali (CERMANU), via Università 100, 80055, Portici, Italy.
  • Rega R; Institute for Applied Sciences and Intelligent Systems, National Research Council (CNR-ISASI), Via Campi Flegrei 34, 80078, Pozzuoli, NA, Italy.
  • Lettieri S; Institute for Applied Sciences and Intelligent Systems, National Research Council (CNR-ISASI), Via Campi Flegrei 34, 80078, Pozzuoli, NA, Italy; Department of Physics "Ettore Pancini", University of Naples Federico II, Via Cinthia 4, Complesso di Monte Sant'Angelo, 80126, Naples, Italy.
  • Cocca M; Institute for Polymers, Composites and Biomaterials (IPCB), National Research Council (CNR) of Italy, Via Campi Flegrei, 34, 80078, Pozzuoli, NA, Italy.
  • Marotta R; Department of Chemical, Materials and Production Engineering (DICMaPI), University of Naples Federico II, Piazzale V. Tecchio 80, 80125, Naples, Italy; Institute for Polymers, Composites and Biomaterials (IPCB), National Research Council (CNR) of Italy, Via Campi Flegrei, 34, 80078, Pozzuoli, NA, It
  • Vitiello G; Department of Chemical, Materials and Production Engineering (DICMaPI), University of Naples Federico II, Piazzale V. Tecchio 80, 80125, Naples, Italy; Institute for Polymers, Composites and Biomaterials (IPCB), National Research Council (CNR) of Italy, Via Campi Flegrei, 34, 80078, Pozzuoli, NA, It
Chemosphere ; 346: 140605, 2024 Jan.
Article en En | MEDLINE | ID: mdl-37931713
As a result of the accumulation of plastic in the environment, microplastics have become part of the food chain, boosting the resistance of fungi and bacteria which can frequently encounter human beings. Employing photocatalytic degradation is a possible route towards the removal of chemical and biological pollutants, such as plastics and microplastic wastes as well as microorganisms. Using biowaste materials to design hybrid nanoparticles with enhanced photocatalytic and antimicrobial features would uphold the principles of the circular bioeconomy. Here, two unexpensive semiconductors-namely titanium dioxide (TiO2) and zinc oxide (ZnO) - were synthetized through solvothermal synthesis and combined with humic substances deriving from agrifood biomass. The preparation led to hybrid nanoparticles exhibiting enhanced ROS-generating properties for simultaneous applications as antimicrobial agents against different bacterial and fungal strains and as photoactive catalysts to degrade polylactic acid (PLA) microplastics under UVA and solar irradiation. In comparison to bare nanoparticles, hybrid nanoparticles demonstrated higher antibacterial and antimycotic capabilities toward various pathogenic microorganisms as well as advanced photocatalytic activity in the degradation of PLA with a carbonyl index reduction in the range of 15-23%, thus confirming a noteworthy ability in microplastics photodegradation under UVA and solar irradiation.
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Texto completo: 1 Colección: 01-internacional Asunto principal: Nanopartículas Multifuncionales / Antibacterianos Límite: Humans Idioma: En Revista: Chemosphere Año: 2024 Tipo del documento: Article País de afiliación: Italia

Texto completo: 1 Colección: 01-internacional Asunto principal: Nanopartículas Multifuncionales / Antibacterianos Límite: Humans Idioma: En Revista: Chemosphere Año: 2024 Tipo del documento: Article País de afiliación: Italia