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- W3203673057 endingPage "120636" @default.
- W3203673057 startingPage "120636" @default.
- W3203673057 abstract "• Metal and metal oxide nanoparticles are promising antimicrobial agents. • Metal and metal oxide nanoparticles closely interact with microbial cells. • Silica and titania are used as solid supports for of Ag, Cu and Fe nanoparticles. • The surface properties of SiO 2 and TiO 2 -based nanocomposites can be easily tuned. The design of advanced materials with antifouling and antimicrobial properties is driven by a wave of research interest covering a window of applications ranging from the fabrication of biomedical devices and water purification systems to marine equipment and food packaging. In this panorama, metal and metal oxide nanoparticles emerged as promising antimicrobial agents due to their intrinsic nature related to a high surface-to-volume ratio and a nanosized structure which enable them to closely interact with microbial cells. It is worth underlining that the antimicrobial efficiency of metal nanoparticles is strongly influenced by their stabilization on a given support able to prevent agglomeration phenomena which lead to a remarkable decrease of the biocidal activity. In this background, silica and titania found application in the preparation of several nanocomposites bearing metal nanoparticles as antimicrobial agents. This review is aimed to provide a more specific focus on the design of antimicrobial nanocomposites based on Ag, Cu and Fe nanoparticles supported on silica and titania." @default.
- W3203673057 created "2021-10-11" @default.
- W3203673057 creator A5040273528 @default.
- W3203673057 creator A5049425845 @default.
- W3203673057 creator A5068224149 @default.
- W3203673057 creator A5076390332 @default.
- W3203673057 date "2022-01-01" @default.
- W3203673057 modified "2023-09-26" @default.
- W3203673057 title "Antifouling and antimicrobial activity of Ag, Cu and Fe nanoparticles supported on silica and titania" @default.
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