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Preparation and characterization of carbopol/silver nanoparticles composites obtained by heating process for antimicrobial application

机译:通过加热处理抗菌应用获得的carbopol /银复合纳米粒子的制备和表征

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摘要

Properties such as absorption, structural and external aspect of Carbopol/silver nanoparticles composites, prepared in DMF by heating process up to 30, 60, 80, 100 and 120 °C, were investigated by UV-visible, FTIR and SEM-EDS analyses. Samples were named respectively D30 to D120, according to the temperature at which they were extracted. The results showed that instead of the appearance of silver aggregates observed by SEM microscopy, all the obtained materials present a single absorption band centred at 430 nm, attributed to the classical surface plasmon excitation of the silver nanoparticles. The presence of silver nanoparticles is also proved by the X-ray powder diffraction XRD patterns, which show the appearance of small peaks corresponding to the face centered cubic (f.c.c.) silver phase in the case of D100 and D120 samples. Additionally strong interactions between silver ions and carboxylic groups of Carbopol were identified by ATR-FTIR spectroscopy. The thermal properties of the carbopol are effectively enhanced by the presence of silver nanoparticles as evidenced by thermo-gravimetric analysis.Furthermore the water loss that generally occurs at 100 °C in acrylic acid polymer was completely avoided in these new materials since less than 2 % of weight loss is recorded up to 160 °C. Finally, the inhibiting activity of Carbopol/silver nanoparticles composites against staphylococcus Aureus micro-organisms was confirmed for all the obtained materials, suggesting their suitable uses as effective growth inhibitors of micro-organisms and making them appropriate for diverse antimicrobial control systems.
机译:通过紫外-可见光,FTIR和SEM-EDS分析研究了在DMF中加热至30、60、80、100和120°C制备的Carbopol /银纳米颗粒复合材料的吸收性能,结构和外观。根据提取温度,将样品分别命名为D30至D120。结果表明,代替通过SEM显微镜观察到的银聚集体的外观,所有获得的材料均呈现出以430nm为中心的单个吸收带,这归因于银纳米颗粒的经典表面等离子体激元激发。 X射线粉末衍射XRD图也证明了银纳米粒子的存在,在D100和D120样品的情况下,该X射线图显示了小峰的出现,该小峰对应于面心立方(f.c.c.)银相。另外,通过ATR-FTIR光谱鉴定出银离子与Carbopol的羧基之间的强相互作用。热重量分析证明,银纳米颗粒的存在有效地提高了卡波普的热性能。此外,在这些新材料中完全避免了丙烯酸聚合物中通常在100°C发生的水分流失,因为少于2%最高失重记录在160°C。最后,对于所有获得的材料都证实了Carbopol /银纳米颗粒复合材料对金黄色葡萄球菌的抑制活性,表明它们适合用作微生物的有效生长抑制剂,并使它们适合于各种抗菌控制系统。

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