4.7 Article

Silver Nanoparticles as Antifungal Agents in Acrylic Latexes: Influence of the Initiator Type on Nanoparticle Incorporation and Aureobasidium pullulans Resistance

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POLYMERS
卷 15, 期 6, 页码 -

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MDPI
DOI: 10.3390/polym15061586

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silver nanoparticles; antifungal properties; acrylic polymers; miniemulsion polymerization; coatings; wood protection

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Discoloration of wood coatings due to fungal growth affects their aesthetic properties. Incorporating silver nanoparticles (AgNPs) in acrylic latexes as antifungal agents can control fungal growth. The dispersion of AgNPs within the latex particles and dry film is influenced by the type of initiator used in miniemulsion polymerization. Despite a smaller amount and less uniform dispersion, acrylic latexes prepared with potassium persulfate (KPS) as the initiator show higher antifungal efficiency against black-stain fungi (Aureobasidium pullulans) compared to those prepared with azobisisobutyronitrile (AIBN).
Discoloration of wood coatings due to fungal growth negatively affects the aesthetic properties of the coatings, and new ways to control fungal growth on coatings are needed. For this reason, silver nanoparticles (AgNPs) have been incorporated in acrylic latexes as antifungal agents. Using miniemulsion polymerization, latexes were prepared with two types of initiators (hydrophilic and hydrophobic) to assess the influence of the initiator type on AgNPs dispersion, both within the latex particles and the dry film. In addition, the impact of NP dispersion on resistance to black-stain fungi (Aureobasidium pullulans) was also evaluated. Inductively coupled plasma optical emission spectroscopy (ICP-OES) analysis indicates that acrylic latexes prepared with azobisisobutyronitrile (AIBN) as the initiator contain more AgNPs than those prepared with potassium persulfate (KPS). Cryo-TEM and SEM analyses show that the distribution of the AgNPs within the polymer particles is influenced by the nature of the initiator. When AIBN, a hydrophobic initiator, is used, the AgNPs appear to be closer to the surface of the polymer particles and more evenly distributed. However, the antifungal efficiency of the AgNPs-embedded latexes against A. pullulans is found to be higher when KPS is used, despite this initiator leading to a smaller amount of incorporated AgNPs and a less uniform dispersion of the nanoparticles.

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