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Using microwave irradiation to catalyze the in-situ manufacturing of silver nanoparticles on cotton fabric for antibacterial and UV-protective application

机译:使用微波辐射催化银纳米颗粒的原位制造在棉织物中的抗菌和紫外线防护应用

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摘要

Antibacterial and UV-protective cotton fabrics were produced with an in-situ synthesis of silver nanoparticles using trisodium citrate as reductive agent and microwave irradiation for starting the synthesis reaction. The creation of silver nanoparticles with different morphologies such as quasi-spherical and cubic nanoparticles was confirmed by the SEM images. The EDS pattern of the loaded sample confirmed the uniform silver loading on the surface of cotton fibers as well as their crystal structure was approved by the X-ray diffraction pattern. Increasing reaction temperature (80, 100, 120, and 140 degrees C) caused a significant decrease up to 75% in the average diameter of nanoparticles and narrowing the size distribution. Also, increasing amounts of trisodium citrate (0, 100, 200, and 400 ppm) in the synthesizing solution resulted in a decrease up to of 59% in the average diameter and prevented agglomeration of nanoparticles. The FTIR spectra confirmed that the highest absorbed water in the loaded cotton samples was achieved in the highest concentration of trisodium citrate. The antibacterial properties of loaded cotton samples significantly depended on the reaction temperature as well as trisodium citrate concentration. The loaded cotton fabrics showed active antibacterial properties with inhibition zones of 16-18.5 mm against the Gram-positiveStaphylococcus aureusand the Gram-negativeEscherichia coli. Moreover, the prepared AgNP cotton fabrics demonstrated excellent UV-rays blocking properties with a high rate of ultraviolet protection factor value. Graphic abstract
机译:使用柠檬酸三钠作为还原剂和微波辐射来制备抗菌和紫外线防护棉织物,其使用柠檬酸钠合成银纳米粒子,并用于开始合成反应的微波辐射。通过SEM图像确认,通过SEM图像确认具有不同形态的银纳米粒子,例如准球形和立方纳米颗粒。加载样品的EDS图案证实了棉纤维表面上的均匀银负载以及X射线衍射图案的晶体结构。增加反应温度(80,100,120和140℃)在纳米颗粒的平均直径下显着降低至75%并使尺寸分布变窄。而且,在合成溶液中增加了柠檬酸三钠(0,100,200和400ppm)的量,导致平均直径的降低至59%,并防止纳米颗粒的附聚。 FTIR光谱证实,在柠檬酸三钠的柠檬酸钠的最高浓度浓度上实现了负载棉样品中的最高吸收水。负载棉样品的抗菌性质显着依赖于反应温度以及柠檬酸三钠浓度。装载的棉织物显示出活性抗菌性能,抑制区域为16-18.5毫米,对革兰氏素的克 - 负性Coli。此外,制备的AGNP棉织物具有优异的紫外线阻断性能,具有高紫外线保护因子值。图形摘要

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