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The Novel Methods for Preparing Antibacterial Fabric Composites Containing Nano-material

机译:制备含纳米材料的抗菌织物复合材料的新方法

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This paper is to develop an antibacterial fabric by mainly radiation grafting technique. Because a fabric should be soft and comfortable, so antibacterial materials need to be very small in size to graft on the fabric. This work used nanosized antibacterial solution or powder, Nylon and PET fibers, as starting materials to prepare antibacterial fabric products. Two radiation synthetic processes were used in the paper, 1. the nanosized silica powder or solution containing silver (named Ag/SiO_2) was introduced to Nylon or PET (Polyethylene terephthalates) fabric by means ofy-ray irradiation method. 2. the nanosized silver particles in solution were reduced and deposited on the surface of fabric used by radiation reduction technique. The microscope TEM & SEM (transmission and scanning electron microscope) and ICP(Induced coupled plasma)...etc were utilized to analyze the characteristics of antibacterial fiber products. In addition, these antibacterial fibre products prepared by radiation reduction method were also subjected to test the antibacterial effect.The results showed that silver-Nylon and silver-PET antibacterial fiber have good antibacterial effects against Staphylococcus aureus , especially the Ag-PET fiber having the better effect than Ag-Nylon fiber.
机译:本文主要通过辐射嫁接技术开发抗菌织物。因为织物应该柔软且舒适,所以抗菌材料需要非常小的尺寸,以在织物上移植物。这项工作用纳米化抗菌溶液或粉末,尼龙和PET纤维,作为制备抗菌织物产品的原料。本文使用了两个辐射合成方法,1.通过射线照射法将含有银(命名为Ag / SiO_2)的纳米型二氧化硅粉末或含银(命名为Ag / SiO_2)的溶液引入尼龙或PET(聚对苯二甲酸乙二醇酯)织物。 2.减少溶液中的纳米银颗粒并沉积在辐射还原技术的织物表面上。显微镜TEM和SEM(传输和扫描电子显微镜)和ICP(诱导耦合等离子体)等被利用分析抗菌纤维产品的特性。此外,还经受辐射减少方法制备的这些抗菌纤维产物进行了抗菌作用。结果表明,银尼龙和银 - PET抗菌纤维对金黄色葡萄球菌具有良好的抗菌作用,尤其是具有该葡萄球菌的粘附纤维良好的抗菌作用比Ag-尼龙纤维更好。

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