Comparison of Antibacterial Activity of ZnO Nanoparticles Fabricated by Two Different Methods and Coated on Tetron Fabric

Ebrahim Zohourvahid Karimi, M. Ansari
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引用次数: 7

Abstract

Zinc Oxide Nanoparticles (ZnO NPs) have wide applications in various industries, especially they have been known for their antibacterial effects in polymers and textile fibers. ZnO NPs were produced by two different solutions and milling methods. Different techniques were used in order to select the most effective methods for coating the fabric with ZnO NPs. The microstructures and the composition of the ZnO NPs were investigated using Field Emission Scanning Electron Microscopy (FE-SEM) coupled with Energy Dispersive X-ray Spectroscopy (EDS) and X-ray diffraction analysis (XRD). Additionally, the antibacterial activity of the treated fabric against Staphylococcus aureus and Escherichia coli bacteria was investigated. The overall experimental findings show that the highest inhibitory effect against Staphylococcus aureus in the sample of fabric which covered with ZnO NPs synthesized by the solution method. In the solution method, ZnO NPs were synthesized by dissolving zinc chloride in 1, 2 Ethanediol and mixing with aqueous solution of sodium hydroxide. In milling method, firstly, zinc sulfide nanoparticles were prepared through reaction between zinc acetate and Thioacetamide and then by milling and oxidation the zinc sulfide nanoparticles, ZnO NPs were synthesized. In order to deposition ZnO NPs on the Tetron fabric, it was fully drawn and fixed on a frame. After that, acrylic copolymer resin was added into distilled water and ZnO NPs were added in another beaker to ethanol. The two beakers were then placed in the ultrasonic bath for a certain time. Finally, the fabric was dipped into the beaker containing resin for some moment and then immersed into the beaker containing ZnO NPs. During these processes, both beakers were in the ultrasonic bath. After drawing out the fabric from second beaker, it was dried in air. This procedure was performed for both types of ZnO NPs fabricated by two mentioned methods. Antibacterial activity of ZnO NPs coated on the fabric against two types of bacteria was studied by agar diffusion method. XRD patterns of synthesized powders from both methods were identified as ZnO NPs. Sharp diffraction peaks indicate good crystallinity of ZnO NPs. The morphology of the ZnO NPs fabricated by both methods which was analyzed by field emission SEM shows that the ZnO particles synthesized by milling and solution methods are in nano scale at the range of 26 - 29 nm and 9 - 11 nm, respectively. The highest inhibitory effect against Staphylococcus aureus was shown for the fabric which coated by ZnO NPs produced by the solution method. It was seen, the antibacterial activity of ZnO NPs fabricated by solution method was higher than that of milling method. ZnO NPs were synthesized by two different methods and the antibacterial activity of Tetron fabric coated with ZnO NPs was studied. Distribution and stability of ZnO NPs on the fabric depend on fabrication method and particle size which means that the smaller particles have more stability and better distribution than larger particles. The particle size and deposited concentration of ZnO NPs were effective on antibacterial activity, so that the smaller particles tend less agglomeration and have more surface area and because of that better antibacterial activity. Overall the results demonstrated a good antibacterial activity against Staphylococcus aureus than Escherichia coli.in the sample of fabric which covered with ZnO NPs synthesized by the solution method.
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两种方法制备的氧化锌纳米颗粒及其包覆在Tetron织物上的抗菌活性比较
氧化锌纳米颗粒(ZnO NPs)具有广泛的应用前景,特别是在聚合物和纺织纤维中的抗菌作用。采用两种不同的溶液和研磨方法制备ZnO纳米粒子。为了选择最有效的ZnO纳米粒子涂层方法,采用了不同的工艺方法。采用场发射扫描电镜(FE-SEM)、能量色散x射线能谱(EDS)和x射线衍射分析(XRD)对ZnO纳米粒子的微观结构和组成进行了研究。此外,还研究了织物对金黄色葡萄球菌和大肠杆菌的抑菌活性。整体实验结果表明,溶液法合成的ZnO NPs覆盖织物样品对金黄色葡萄球菌的抑制效果最高。在溶液法中,将氯化锌溶解于1,2 -乙醇二醇中,与氢氧化钠水溶液混合,合成ZnO NPs。在研磨法中,首先通过乙酸锌与硫乙酰胺反应制备出硫化锌纳米颗粒,然后对其进行研磨和氧化制备出氧化锌纳米颗粒。为了在Tetron织物上沉积ZnO NPs,将其完全拉伸并固定在框架上。然后,将丙烯酸共聚物树脂加入蒸馏水中,将ZnO NPs加入另一个烧杯中乙醇中。然后将两个烧杯放在超声波浴中一段时间。最后,将织物浸入含有树脂的烧杯中片刻,然后浸入含有ZnO NPs的烧杯中。在这些过程中,两个烧杯都在超声波浴中。从第二个烧杯中抽出织物后,在空气中干燥。该方法适用于两种方法制备的ZnO纳米粒子。采用琼脂扩散法研究了ZnO NPs对两种细菌的抑菌活性。两种方法合成的粉末的XRD谱图均为ZnO纳米粒子。尖锐的衍射峰表明ZnO纳米粒子具有良好的结晶度。通过场发射扫描电镜对两种方法制备的ZnO纳米粒子形貌进行了分析,结果表明,研磨法和溶液法制备的ZnO纳米粒子分别在26 ~ 29 nm和9 ~ 11 nm的纳米尺度范围内。用溶液法制备的氧化锌纳米粒子包覆织物,对金黄色葡萄球菌的抑制效果最好。结果表明,溶液法制备的ZnO纳米粒子的抑菌活性高于研磨法制备的ZnO纳米粒子。采用两种不同的方法合成了ZnO NPs,并研究了涂覆ZnO NPs的Tetron织物的抗菌活性。ZnO纳米粒子在织物上的分布和稳定性取决于制备方法和粒径,这意味着小颗粒比大颗粒具有更好的稳定性和更好的分布。ZnO纳米粒子的粒径和沉积浓度对其抑菌活性有影响,粒径越小,越不易团聚,表面积越大,抑菌活性越好。结果表明,其对金黄色葡萄球菌的抑菌活性优于大肠杆菌。用溶液法合成的ZnO纳米粒子覆盖织物样品。
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