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Bactericidal Effect of Cotton Fabric Treated with Polymer SolutionContaining Silver Nanoparticles of Different Sizes and Shapes

Khaydar E. YunusovInstitute of Polymer Chemistry and Physics, Uzbekistan Academy of Sciences, Str. A. Khadyri 7"b", Tashkent 100128, UzbekistanA. A. SarymsakovInstitute of Polymer Chemistry and Physics, Uzbekistan Academy of Sciences, Str. A. Khadyri 7"b", Tashkent 100128, UzbekistanS.V. MullajonovaInstitute of Polymer Chemistry and Physics, Uzbekistan Academy of Sciences, Str. A. Khadyri 7"b", Tashkent 100128, UzbekistanFozil Mamaraim Ugli TurakulovInstitute of Polymer Chemistry and Physics, Uzbekistan Academy of Sciences, Str. A. Khadyri 7"b", Tashkent 100128, UzbekistanС. Ш. РашидоваInstitute of Polymer Chemistry and Physics, Uzbekistan Academy of Sciences, Str. A. Khadyri 7"b", Tashkent 100128, Uzbekistan
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Stable silver nanoparticles in solutions of sodium-carboxymethylcellulose (Na-CMC) were synthesized and their structure and physico-chemical properties were evaluated. The form and sizes of silver nanoparticles formed in solutions of CMC and cotton fabrics were studied using UV-VIS spectroscopy, atomic force microscopy and transmission electron microscopy methods. It was found that silver nitrate concentration increase in sodium carboxymethylcellulose solutions, as well as photoirradiation of the hydrogel lead to the changes of the silver nanoparticles size and shape. Investigations have also shown that spherical silver nanoparticles with sizes of 5-35 nm and content of 0.0086 mass% in cotton fabrics possess high bactericidal activity. Stabilization of silver nanoparticles has preserved bactericidal and bacteriostatic activities during the washing of cotton fabrics and textiles on their base.

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