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One-put green synthesis of multifunctional silver iron core-shell nanostructure with antimicrobial and catalytic properties

机译:用抗微生物和催化性能进行多功能银铁核 - 壳纳米结构的单绿色合成

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Bringing two completely different properties into one nanostructure by using individual metals is a difficult goal to achieve. However, recently core-shell metallic nanostructures have introduced as a novel multifunctional nanomaterial with enhanced properties. Iron and silver based nanoparticles are among the most widely applicable nanomaterials in modem industries. Zero-valent iron nanostructures and silver nanoparticles are well known for their applications as catalyst and antimicrobial agent, respectively. In the present study, for the first time, we are reporting a successful fabrication of zero valent iron coated silver nanoparticles (ZVI@AgNPs) by using a green and one-pot synthesis approach. Aqueous leaf extract of Mediterranean cypress (Cupressus sempervirens) was used as a natural source of reducing and capping agent for reduction of both Ag+ and Fe3+ ions. Prepared nanostructures were characterised by a range of analytical techniques namely UV-vis spectroscopy, Transmission Electron Microscopy, X-Ray Diffraction, and Fourier Transform Infra-Red Spectroscopy. The prepared nanostructures were found to be an effective material for dye removal and were capable to remove 98.5% of the initial dye just after 4 h. Based on the results, zero valent iron coating enhanced the antimicrobial potential of AgNPs against Gram-positive bacteria (S. aureus), while showing no significant enhancement against Gram-negative bacteria (E. coli). ZVI@AgNPs, therefore, can be introduced as a novel nanostructure for application in aquatic filter materials to simultaneously reduce microbial and organic contaminants.
机译:通过使用单独的金属将两个完全不同的性质带入一个纳米结构是实现的难度目标。然而,最近核 - 壳金属纳米结构引入了具有增强性质的新型多功能纳米材料。基于铁和银的纳米粒子是调制解调器行业中最广泛适用的纳米材料之一。零价铁纳米结构和银纳米颗粒分别为其作为催化剂和抗微生物剂的应用。在本研究中,我们首次报告通过使用绿色和单盆合成方法成功地制备零价铁涂层银纳米颗粒(ZVI @ AgNP)。地中海赛普拉斯(Cupressus Sempervirens)的含水叶提取物作为减少Ag +和Fe3 +离子的还原和封端剂的天然来源。制备的纳米结构的特征在于一系列的分析技术即UV-Vis光谱,透射电子显微镜,X射线衍射和傅里叶变换红外光谱。发现制备的纳米结构是用于去除染料的有效材料,并且能够在4小时后去除98.5%的初始染料。基于结果,零价铁涂料增强了针对革兰氏阳性细菌(金黄色葡萄球菌)的抗微生物潜力,同时表现出对革兰氏阴性细菌(大肠杆菌)的显着增强。因此,ZVI @ AGNP可以作为一种新的纳米结构,用于在水生过滤材料中应用,同时减少微生物和有机污染物。

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