2018
DOI: 10.1016/j.carbpol.2018.07.073
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Poly(quaternary ammonium salt-epoxy) grafted onto Ce doped ZnO composite: An enhanced and durable antibacterial agent

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Cited by 48 publications
(14 citation statements)
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“…In recent years, a variety of antibacterial agents such as chitosan [5], metal oxides [6], quaternary ammonium salts [7], peptides [8], and guanidine polymers [9] have been used in antibacterial finishing for cotton fabrics. According to the literature [10,11], cationic polymers such as quaternary ammonium salts exhibit excellent bactericidal performance, for example, cotton fabrics treated with quaternary ammonium salt macromolecules can directly kill bacteria by destroying the integrity of cell membranes and impairing the normal respiratory function of bacterial cells [12,13]. However, the cationic antibacterial agents can be inactivated when anionic polymers or additives are encountered [14].…”
Section: Introductionmentioning
confidence: 99%
“…In recent years, a variety of antibacterial agents such as chitosan [5], metal oxides [6], quaternary ammonium salts [7], peptides [8], and guanidine polymers [9] have been used in antibacterial finishing for cotton fabrics. According to the literature [10,11], cationic polymers such as quaternary ammonium salts exhibit excellent bactericidal performance, for example, cotton fabrics treated with quaternary ammonium salt macromolecules can directly kill bacteria by destroying the integrity of cell membranes and impairing the normal respiratory function of bacterial cells [12,13]. However, the cationic antibacterial agents can be inactivated when anionic polymers or additives are encountered [14].…”
Section: Introductionmentioning
confidence: 99%
“…For fabric treated with ZnSn(OH) 6 , the bands observed at 778, 850, 1180, and ∼2303 cm –1 may be correlated with the presence of M–OH or M–OH–M groups, i.e., the metal hydroxide bond. 27 The concerned FTIR curve also showed the bending vibration modes of surface −OH groups at 3200 cm –1 , which may be associated with the presence of H-bonding with ZnSn(OH) 6 and the hydroxyl groups of cellulose due to a slight shift of the vibration of −OH. The FTIR curve for the fabric treated with annealed zinc stannate did not show the presence of M–OH or M–OH–M groups on the substrate, whereas the intensity of the M–O–M or the Zn–O–Sn or ZnO or SnO 2 bonds got strengthened, which is visible at 530–591 cm –1 .…”
Section: Resultsmentioning
confidence: 92%
“…Organic nanomodifications of epoxy resins to impart antimicrobial activity were carried out through different strategies: Blending with intrinsically biocidal polymers such as chitosan [ 70 , 71 ] or copolymerization, with organic moieties able to modify the surface polarity, such as PANI [ 72 ] or non-isocyanate polyurethane [ 73 ], or epoxy polymers made from phenolic branched fatty acids [ 74 , 75 ], or using antibacterial polyether biguanide as a curing agent [ 76 ]. Incorporating into the epoxy resin of quaternary ammonium moieties, which could be formed by (a) direct reaction of NH groups along the epoxy-resin chain with alkyl bromides [ 77 , 78 , 79 ], or preparing hybrid siloxane epoxy coatings by reaction of diamine-bearing epoxy moieties with siloxane-bearing amine groups [ 80 ]; (b) dispersing quaternary ammonium polyethylenimine nanoparticles previously prepared [ 81 ]; (c) preparing polysiloxane quaternary ammonium salts, containing epoxy groups to react with amines [ 82 ] and (d) preparing poly(quaternary ammonium salt-epoxy) grafted on Ce or ZnO nanoparticles [ 83 , 84 ]. Incorporating biocidal compounds, such as triclosan [ 85 ].…”
Section: Enhancement Of Antimicrobial Properties Via Nanomodification Of Epoxiesmentioning
confidence: 99%