2014
DOI: 10.1039/c3tb21445a
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In situ synthesis of iron oxide nanoparticles on polyester fabric utilizing color, magnetic, antibacterial and sono-Fenton catalytic properties

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Cited by 92 publications
(41 citation statements)
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“…The improvement of mechanical properties of the treated fabrics using nanoparticles reported due to the influence of nanoparticles as filler in the composite [48]. Introducing nano-silver particles into the structure of nylon creates a cross-linked network of nanoparticles between polyamide chains.…”
Section: Mechanical Propertiesmentioning
confidence: 99%
“…The improvement of mechanical properties of the treated fabrics using nanoparticles reported due to the influence of nanoparticles as filler in the composite [48]. Introducing nano-silver particles into the structure of nylon creates a cross-linked network of nanoparticles between polyamide chains.…”
Section: Mechanical Propertiesmentioning
confidence: 99%
“…Introducing specific functional groups on polyester surface to improve the performance and obtain new applications has been always demanded [2][3][4]. It has been suggested that surface modification affect handle, thermal properties, permeability, and hydrophilicity of polyester fibers [1].…”
Section: Introductionmentioning
confidence: 99%
“…The linear increase in the magnetization is ascribed to the contribution of the Fe2O3 antiferromagnetic core. The magnetization of the as-prepared Fe2O3 particles is smaller than that in previous studies [29], as this is influenced by the microstructural characteristics of the crystal structure [45]. The coercivity and remnant magnetization of Fe2O3 particles are calculated to be 292 Oe and 0.077 emu/g respectively (see inset of Fig.…”
Section: Vsm Analysismentioning
confidence: 62%
“…Monodisperse alpha-Fe2O3 nanostructures are also prepared in an efficient Bombyx mori silk fibroin assisted hydrothermal process, and the morphologies of alpha-Fe2O3 nanostructures having shape-dependent magnetic properties are greatly influenced by the concentration of the silk fibroin [28]. Multi-functional polyester (PET) fabrics having magnetic, antibacterial and sono-Fenton catalytic properties are fabricated in situ synthesis of Fe3O4 and alpha-Fe2O3 nanoparticles using ferric chloride, ferrous sulfate and sodium hydroxide at various temperatures [29].…”
mentioning
confidence: 99%