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http://yadda.icm.edu.pl:80/baztech/element/bwmeta1.element.baztech-article-BPS2-0054-0076

Czasopismo

Przegląd Włókienniczy - Włókno, Odzież, Skóra

Tytuł artykułu

Nowe materiały włókiennicze o właściwościach barierowych przed promieniowaniem nadfioletowym i drobnoustrojami. Cz. II

Autorzy Sójka-Ledakowicz, J.  Olczyk, J.  Walawska, A.  Kamińska, I.  Gutarowska, B.  Żakowska, Z.  Kozanecka, E. 
Treść / Zawartość
Warianty tytułu
EN New textile materials with barrier properties against ultraviolet radiation and microorganisms
Języki publikacji PL
Abstrakty
EN Intensive development of the nanotechnotogy connected with the production of micro- and nanostructures is creating huge possibilities for coming into existence of modern multifunctional products. That kind of materials on the basis of textile carriers can have the wide application thanks to the new properties. Nanoparticles of metal oxides such like e. g. TiO2, ZnO belong to the group of substances demonstrating the bioactivity, the property of the absorption of the ultraviolet radiation (UV) and abilities to the photooxidization of organic substances. Titanium dioxide and zinc oxide micronised or in the form of nanoparticles are applied in cosmetology as substances absorbing the UV radiation. Nanocrystals of TiO2, have the ability to absorb the ultraviolet radiation getting in the way the energy which can be used for initiation of chemical reactions. Photocatalytic properties of TiO2 depend on its morphology, the size of particles and the crystallographical form. Elaboration of the new generation functional textile materials with photocatalytic and barrier properties for the UV radiation and microorganisms was a superior purpose of research undertaken by the team of authors. The first stage of research included the elaboration of methodology of the incorporation of TiO2 preparations into the structure of the textile. In examinations, the samples of TiO2 (titanic white) with the determined crystallographical form and the morphology and the nano-TiO2 samples after the modification of the surface with silan binding agents were used. Assessment of obtained microstructures for textile modified with TiO2 preparations was made using the electron scanning microscope (SEM) JEOL JSM- 35C with resolution 6 nm. Protective properties toward the UV radiation according to the standard EN 13758 - 1:2002 using double beam spectrophotometer JASCO 550 and antibacterial activity of elaborated barrier materials were examined. Assessment of the antibacterial and antifungal properties was made for preparations of titanium dioxide and textile materials modified with TiO2.
Słowa kluczowe
PL materiały włókiennicze   właściwości barierowe   promieniowanie UV   właściwości antybakteryjne  
Wydawca Wydawnictwo SIGMA-NOT
Czasopismo Przegląd Włókienniczy - Włókno, Odzież, Skóra
Rocznik 2010
Tom nr 5
Strony 40--43
Opis fizyczny Bibliogr. 15 poz., rys., tab.
Twórcy
autor Sójka-Ledakowicz, J.
autor Olczyk, J.
autor Walawska, A.
autor Kamińska, I.
autor Gutarowska, B.
autor Żakowska, Z.
autor Kozanecka, E.
  • Instytut Włókiennictwa w Łodzi
Bibliografia
1. Kullavanijaya P., Lim H. W., Photoprotection, Journal of the American Academy of Dermatology (2005) 52: 437-958.
2. Robles Velasco M. V., Sarruf F. D., Salgado-Santos I. M. N., Haroutiounian-Filho C. A., Kaneko T. M., Baby A. R., Broad spectrum bioactive sunscreens, International Journal of Pharmaceutics 363 (2008) 50-57.
3. Eckhardt C., Rohwer H., UV protector for cotton fabrics, Textile Chemist and Colorist & American Dyestuff Reporter Vol.32 No.4 (2000) 21-23.
4. Wedler M., Hirthe B., UV-absorbing micro additives for synthetic fibres, Chem. Fibres Int.(1999) 44:72.
5. Popov A. P., Priezzhev A. V., Lademann J., Myllylä R., TiO2 nanoparticles as an ęffective UV-B radiation skin-protective compound in sunscreens, J. Phys. D: Applied Physics 38 (2005) 2564-2570.
6. Kathirvelu, L. D'Souza, Dhurai B., Nanotechnology applications in textiles, Indian Journal of Science and technology,Vol. 1 No 5 (2008) 1-10.
7. Xin H., Daoud W. A., Kong Y. Y., A new approach to UV-blocking treatment for cotton fabrics, Textile Research Journal (2004) 74: 97-4-100.
8. Fei B., Deng Z., Xin J. H., Zhang Y., Pang G., Room temperature synthesis of rutile nanorods and their applications on cloth, Nanotechnology (2006) 17: 1927-1931.
9. Qi K., Chen X., Liu Y., Xin J. H., Mak C. L., Daoud W. A., Facile preparation of anatasa/Sio2 spherical nanocomposites and their application in self cleaning textiles, J. Mater Chem (2007) 17:3504-3508.
10. Tung W. S., Daoud W. A., Photocatalytic formulations for protein fibers: Experimental analysis of the effect of preparation on compatibility and photocatalytic activities, Journal of Colloid and Interface Science, 326 (2008) 283-288.
11. Carp O., Huisman C. L., Reller A., Photoinduced reactivity of titanium dioxide, Progress in Solid State Chemistry 32 (2004) 33-177.
12. Addamo M., Augugliaro V., Di Paola A., Garcia-Lopez E., Loddo V., Marci G., Molinari R., Palmisano L., Schiavello M., Phys J., Chem. B: 108, (2004), 3303.
13. Katangur P., Patra P. K., Warner S. B., Nanostructured ultrafiolet resistant polymer coatings, Polymer Degradation and Stability, 2006, 91:2437-2442.
14. Lu H., Fei B., Xin J. H., Wang R., Li L., Fabrication of UV-blocking nanohybrid coating via miniemulsion polymerisation,.J Colloid Interface Sci 3000 (2006) 111-116.
15. Wei Q. F., Huang F.L., Hou.Y. D., Wang Y. Y., Surface functionalisation of polymer nanofibres by sputter coating of titanium dioxide, Applied Surface Science 252 (2006) 7874-7877. '
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