DocumentCode
2582188
Title
Modifying medical textiles with antibacterial and friction resistance abilities by an alternative nanotextile technology called ion implantation technique
Author
Öztarhan, Ahmet ; Akpek, Ali ; Oks, Efim ; Nikolaev, Alexey
Author_Institution
Biyomuhendislik Bolumu, Ege Univ., Izmir, Turkey
fYear
2010
fDate
21-24 April 2010
Firstpage
1
Lastpage
4
Abstract
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.
Keywords
antibacterial activity; biomedical materials; carbon; chromium; corrosion resistance; friction; ion implantation; nanobiotechnology; nanostructured materials; silver; textiles; titanium; titanium compounds; Ag; C; Cr; Ti; TiO2; alternative nanotextile technology; antibacterial ability; corrosion resistance; friction resistance ability; implanted carbon ions; implanted chromium ions; implanted metal ions; implanted metal-gas ions; implanted titanium ions; ion implantation technique; medical textile modification; polyester fabric surface; silver implantation; textile structural properties; titania implantation; Anti-bacterial; Chromium; Corrosion; Fabrics; Friction; Immune system; Ion implantation; Nanobiotechnology; Surface resistance; Textile technology;
fLanguage
English
Publisher
ieee
Conference_Titel
Biomedical Engineering Meeting (BIYOMUT), 2010 15th National
Conference_Location
Antalya
Print_ISBN
978-1-4244-6380-0
Type
conf
DOI
10.1109/BIYOMUT.2010.5479859
Filename
5479859
Link To Document