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Evaluation of multifunctional properties of polyester/cotton blend treated with unmodified and modified nano-TiO2 particles

机译:未改性和改性的纳米TiO2颗粒处理的聚酯/棉共混物的多功能性能评估

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TiO2 nanoparticles have been synthesised using sol-gel technique by titanium tetraisopropoxide (C12H28O4Ti,) as a precursor. The particle has been modified using 3-aminopropyltriethoxysilane as a surface modifier. The unmodified and modified particles were characterise for size and distribution using a particle size analyser, which works on dynamic light scattering principle. The particles have been applied on polyester/cotton woven fabric for various concentrations of nanoparticles. The treated fabric has been characterised for protective properties such as antimicrobial activity (against Staphylococcus aureus, Klebsiella pneumonia and Escherichia coli) and ultraviolet protection factor (UPF) factors and for easy care properties such as soil release and self-cleaning behaviours. The functionality of the treated fabric was studied and also tested for durability for repeated wash cycles. The particle size of unmodified and modified TiO2 have been found to be 25 and 18nm respectively. The treated samples with modified TiO2 have shown higher antimicrobial activity. Self-cleaning effect of the modified TiO2 treated fabric has been found to be notably higher than the unmodified TiO2 treated fabric. Soil release effect, which was studied subjectively, also showed improved performance for those fabrics treated with modified nano-TiO2. The UPF results of the unmodified and modified nano-TiO2 fabric did not have notable differences but were almost the same. Both unmodified and modified TiO2 treated fabrics have shown the::deceasing treated in all the functional properties studied; however, the rate of decrease was low up to the tenth wash, and then, it became notable at the fifteenth and above wash cycles. The surface light reflection characteristics, through whiteness index of the unmodified TiO2 treated fabrics, were also found to be at increasing trend with treatment concentration.
机译:TiO2纳米粒子已通过溶胶-凝胶技术以四异丙氧基钛(C12H28O4Ti,)为前体合成。使用3-氨基丙基三乙氧基硅烷作为表面改性剂对颗粒进行了改性。使用粒径分析仪对未改性和改性的颗粒进行尺寸和分布表征,该分析仪基于动态光散射原理。将该颗粒施加于聚酯/棉机织织物上以得到各种浓度的纳米颗粒。经处理的织物的特征在于具有保护性能,例如抗菌活性(针对金黄色葡萄球菌,肺炎克雷伯菌和大肠杆菌)和紫外线保护因子(UPF)因子,以及易于护理的特性,例如去污和自洁性。对经处理的织物的功能性进行了研究,并测试了其反复洗涤周期的耐久性。发现未改性的和改性的TiO 2的粒径分别为25和18nm。用改性的TiO 2处理的样品显示出更高的抗菌活性。已经发现改性的TiO 2处理的织物的自清洁效果明显高于未改性的TiO 2处理的织物。经主观研究的去污效果也显示出,用改性的纳米TiO2处理的那些织物具有改善的性能。未改性和改性的纳米TiO2织物的UPF结果没有显着差异,但几乎相同。未改性的和改性的TiO2处理的织物都显示出:在所研究的所有功能特性中,处理量不断减少;然而,直到第10次洗涤为止,降低率仍然很低,然后,在第15次及以上的洗涤周期中,下降率变得显着。通过未改性的TiO 2处理的织物的白度指数,还发现表面光反射特性随着处理浓度而呈增加趋势。

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