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Antimicrobial nano-silver non-woven polyethylene terephthalate fabric via an atmospheric pressure plasma deposition process

机译:通过常压等离子体沉积工艺的抗微生物纳米银无纺聚对苯二甲酸乙二醇酯织物

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摘要

An antimicrobial nano-silver non-woven polyethylene terephthalate (PET) fabric has been prepared in a three step process. The fabrics were first pretreated by depositing a layer of organosilicon thin film using an atmospheric pressure plasma system, then silver nano-particles (AgNPs) were incorporated into the fabrics by a dipping-dry process, and finally the nano-particles were covered by a second organosilicon layer of 10-50 nm, which acts as a barrier layer. Different surface characterization techniques like SEM and XPS have been implemented to study the morphology and the chemical composition of the nano-silver fabrics. Based on these techniques, a uniform immobilization of AgNPs in the PET matrix has been observed. The antimicrobial activity of the treated fabrics has also been tested using P. aeruginosa, S. aureus and C. albicans. It reveals that the thickness of the barrier layer has a strong effect on the bacterial reduction of the fabrics. The durability and stability of the AgNPs on the fabrics has also been investigated in a washing process. By doing so, it is confirmed that the barrier layer can effectively prevent the release of AgNPs and that the thickness of the barrier layer is an important parameter to control the silver ions release.
机译:抗菌纳米银非织造聚对苯二甲酸乙二酯(PET)织物已通过三步法制备。首先通过使用大气压等离子体系统沉积一层有机硅薄膜对织物进行预处理,然后通过浸入-干燥工艺将银纳米颗粒(AgNPs)掺入到织物中,最后用碳纳米管覆盖纳米颗粒。第二层有机硅层为10-50 nm,用作阻挡层。已经实施了诸如SEM和XPS的不同表面表征技术来研究纳米银织物的形态和化学组成。基于这些技术,已经观察到AgNP在PET基质中的均匀固定。还使用铜绿假单胞菌,金黄色葡萄球菌和白色念珠菌测试了处理过的织物的抗菌活性。这表明阻挡层的厚度对织物的细菌减少具有强烈的影响。还已经在洗涤过程中研究了AgNP在织物上的耐久性和稳定性。通过这样做,证实了阻挡层可以有效地防止AgNP的释放,并且阻挡层的厚度是控制银离子释放的重要参数。

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