2020
DOI: 10.1016/j.porgcoat.2020.105576
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Antimicrobial cationic acrylate-based hybrid coatings against microorganism contamination

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Cited by 17 publications
(8 citation statements)
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“…For nonleachable antimicrobial coatings, as shown in Figure 7, Wang et al synthesized cationic acrylate copolymers (PAMs) using 3-(methacryloylamino)propyltrimonium chloride (MPAC) with three acrylates, which used the electrostatic action of MPAC and the ROS produced by TiO 2 to jointly resist microbial contamination. 116 Similarly, Daniels et al prepared sol−gel coatings containing fluorosilanes and QAS (FQSGC), and the synergistic effect of the fluorosilanes and QAS reduced the surface free energy and preserved antimicrobial properties. 117 Li et al also prepared quaternized poly(N,N-dimethylaminoethyl methacrylate)-b-poly(1H,1H,2H,2H-heptadecafluorodecyl acrylate) block copolymers (PDMA-b-PFOEMA), and the migration of fluorinecontaining blocks in the copolymers improved the biocompatibility.…”
Section: Qass Antibacterialmentioning
confidence: 99%
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“…For nonleachable antimicrobial coatings, as shown in Figure 7, Wang et al synthesized cationic acrylate copolymers (PAMs) using 3-(methacryloylamino)propyltrimonium chloride (MPAC) with three acrylates, which used the electrostatic action of MPAC and the ROS produced by TiO 2 to jointly resist microbial contamination. 116 Similarly, Daniels et al prepared sol−gel coatings containing fluorosilanes and QAS (FQSGC), and the synergistic effect of the fluorosilanes and QAS reduced the surface free energy and preserved antimicrobial properties. 117 Li et al also prepared quaternized poly(N,N-dimethylaminoethyl methacrylate)-b-poly(1H,1H,2H,2H-heptadecafluorodecyl acrylate) block copolymers (PDMA-b-PFOEMA), and the migration of fluorinecontaining blocks in the copolymers improved the biocompatibility.…”
Section: Qass Antibacterialmentioning
confidence: 99%
“…Antimicrobial coatings can also be subdivided into nonleachable and water-soluble types. For nonleachable antimicrobial coatings, as shown in Figure , Wang et al synthesized cationic acrylate copolymers (PAMs) using 3-(methacryloylamino)­propyltrimonium chloride (MPAC) with three acrylates, which used the electrostatic action of MPAC and the ROS produced by TiO 2 to jointly resist microbial contamination . Similarly, Daniels et al.…”
Section: Application Of Qassmentioning
confidence: 99%
“…As mentioned in Section 3.3, MEQABr‐ x ( x = 12, 14, 16) could form micelles, that play a role in emulsifier. With the increase of MEQABr‐14 content or alkyl chain length of MEQABr‐ x ( x = 12, 14, 16), there were more micelles in SAQ x ‐ n emulsion compared with SA emulsion that facilitating the reaction and stabilizing the particles, 33 therefore, compared with SA emulsion, the gel content and particle sizes decreased, the solid content, and conversation rate increased (Figure 4A–F). However, the solid content, the conversation rate and the particle sizes showed an opposite trend when the content of MEQABr‐14 further increased to 9 wt% (based on films) (Figure 4B,C), that was the increasing number of alkyl chain of MEQABr‐14 aggregated in micelles, as well as the formation of hydrogen bonds of the carbamate in MEQABr‐14 and COOH in AA, would result in the trap of monomers in copolymers chains, making it difficult to diffuse and react with free radicals, therefore the solid content and conversation rate decreased (Figure 4B,C), the particle sizes increased (Figure 4I–L).…”
Section: Resultsmentioning
confidence: 99%
“…Hitherto, one of very important research field was exploiting antibacterial agents, 6,7 such as antibacterial agents based on metals (e.g., silver, copper, and zinc) and its compounds, quaternary ammonium salts (QASs), and its derivatives, and others 8 . Among them, some different QASs were explored their low hypotoxicity, excellent antibacterial ability, 9,10 and good stability 11 . However, QASs is small molecule compounds that easy to migrate and cause environmental pollution.…”
Section: Introductionmentioning
confidence: 99%