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Modifying medical textiles with antibacterial and friction resistance abilities by an alternative nanotextile technology called ion implantation technique

机译:通过称为离子注入技术的替代纳米织物技术改变具有抗菌和耐摩力的耐抗菌能力的医用纺织品

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In this study which can be seen as a nanomaterial or nanobiotechnology study; Metal and Metal+gas ions implanted to the polyester fabric''s surfaces and by the help of this, lots of different abilities were provided to textiles. Without changing any structural properties of textiles, Cr, Ti ve C ions implanted to the Polyester fabric''s surfaces and created friction and corrosion resistance. Also by the help of Ag and TiO2 implantation, Polyester fabrics acquired antibacterial ability againist very dangerous pathogenes like Hospital infections. In this study, titanium, carbon and crom was implanted to the Polyester fabric''s surfaces and these fabric''s corrosion and friction coefficients were compared with untreated Polyester''s corrosion and friction coefficient. As a result it has been seen that when ion doses increase, corrosion and friction ratios decrease. This had seen at every fabrics. After this phase, according to the novel applications on nanomedicine, medical textiles were investigated and Ag and TiO2 implanted to some types of medical textiles to provide them antibacterial ability. These fabrics antibacterial efficiencies were compared with medical textiles which modyfied with nanoparticles.
机译:在这项研究中,可以被视为纳米材料或纳米生态技术研究;将金属和金属+气体植入聚酯织物的表面,从而提供了许多不同的能力,提供给纺织品。在不改变纺织品的任何结构性质,Cr,Ti Ve C离子注入聚酯织物的表面并产生摩擦和耐腐蚀性。同样在Ag和TiO 2 植入的帮助下,涤纶织物获得了抗菌能力,再次是医院感染等危险的病原因。在本研究中,将钛,碳和Crom植入聚酯织物的表面,并将这些织物的腐蚀和摩擦系数与未处理的聚酯的腐蚀和摩擦系数进行比较。结果,已经看到,当离子剂量增加时,腐蚀和摩擦比率降低。这在每个面料都看到过。根据该阶段,根据纳米胺的新应用,研究了医用纺织品,Ag和TiO 2 植入某些类型的医用纺织品以提供抗菌能力。将这些织物抗菌效率与用纳米颗粒进行了多种药物的医用纺织品进行了比较。

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