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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Development of improved nanosilver-based antibacterial textiles via synthesis of versatile chemically modified cotton fabrics
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Development of improved nanosilver-based antibacterial textiles via synthesis of versatile chemically modified cotton fabrics

机译:通过合成多种化学修饰的棉织物开发改进的纳米银基抗菌纺织品

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Cationization of cotton fabric form was effected by reacting the cellulose with 3-chloro-2 hydrox-ypropyl trimethyl ammonium chloride in presence of sodium hydroxide as per the pad dry cure method. Thus obtained cationized cotton cellulose was reacted with a reactive copolymer, namely, reactive β-cyclodextrin grafted with polyacrylic acid (MCT-βCD-g-PAA).Bridging of another copolymer, namely, β-cydodextrin grafted with polyacrylic acid (βCD-g-PAA) to the cationized fabric using epichlorohy-drin crosslinker was also performed. Inclusion of Ag nanoparticles in these three cotton substrates via treatment of the latter with colloid of Ag nanoparticles or through in situ formation of the former was exercised. Characterization of cotton fabric before and after being chemically modified was carried out using FTIR, XRD and SEM. Bacterial examination of the cationized cotton containing either (MCT-βCD-g-PAA) or (βCD-g-PAA) incorporated with Ag nanoparticles showed these substrates function against G+ve and G-ve bacteria. Ability of (MCT-βCD-g-PAA) modified cotton to include hydrophobic molecules was examined.
机译:按照垫干法,通过使纤维素与3-氯-2羟丙基三甲基氯化铵在氢氧化钠存在下反应,来实现棉织物形式的阳离子化。将得到的阳离子化棉纤维素与反应性共聚物,即接枝有聚丙烯酸的反应性β-环糊精(MCT-βCD-g-PAA)反应。另一种共聚物的桥接,即接枝有聚丙烯酸的β-环糊精(βCD-g)。还使用环氧氯丙烷交联剂对阳离子化的织物进行了-PAA)处理。通过用Ag纳米颗粒的胶体处理后者或通过原位形成前者,将Ag纳米颗粒包含在这三种棉质基质中。使用FTIR,XRD和SEM对化学改性前后的棉织物进行表征。对含有掺有Ag纳米粒子的(MCT-βCD-g-PAA)或(βCD-g-PAA)的阳离子棉的细菌检查表明,这些底物可抵抗G + ve和G-ve细菌。研究了(MCT-βCD-g-PAA)修饰棉包含疏水分子的能力。

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