GREEN SYNTHESIS AND CHARACTERIZATION OF ALCHEMILLA VULGARIS SILVER NANOPARTICLES

Shilpee Jain, A. Yadav, R. Gothalwal
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Abstract

Among all the nanoparticles synthesized; silver nanoparticles have attained special place in the area of nano technology because of their antimicrobial, nontoxic, environmentally safe and biomedical applications. In general; their syntheses involves the use of hazardous chemicals or costly physical methods. However, the biological processes are making their ways in between and proving their advantages over them. The use of plants and their extracts is one of the most valuable methods which are gaining concerns due to their imperative biological benefits. Plants are not only beautiful but majestic because they are rich sources of various medicinally important substances. They explore the huge diversity which can be utilized towards rapid and single step protocol preparatory method for various nanoparticles keeping intact “the green principles” over the conventional ones and proving their dominance for medicinal importance. Here, in the presented work “one pot synthesis of silver nanoparticles” is described. Therefore; a simple, cost effective bio-reduction on the principle of “green synthesis” of silver nanoparticles using the Alchemilla vulgaris plant extract is reported. The beauty of the synthesis is: no involvement of any surfactant, catalyst or template. The aqueous silver ions are reduced to silver nanoparticles when exposed to plant extract. The bio-reduction and stabilization of so formed silver nanoparticles was monitored by UV-Vis spectrophotometry, FTIR spectroscopy, SEM, particle size and zeta potential.
金缕草纳米银的绿色合成及表征
在所合成的纳米颗粒中;银纳米颗粒因其抗菌、无毒、环保和生物医学应用而在纳米技术领域占有特殊地位。一般来说;它们的合成涉及使用危险化学品或昂贵的物理方法。然而,生物过程在两者之间形成了自己的方式,并证明了自己的优势。利用植物及其提取物是最有价值的方法之一,由于其迫切的生物学效益而受到关注。植物不仅美丽而且雄伟,因为它们是各种重要药用物质的丰富来源。他们探索了巨大的多样性,可以用于各种纳米粒子的快速和单步方案制备方法,保持完整的“绿色原则”,而不是传统的,并证明了它们在医学上的重要性。本文介绍了“一锅法合成纳米银”的方法。因此;本文报道了一种基于“绿色合成”原理的简单、经济有效的生物还原方法,即利用炼金术植物提取物合成纳米银。合成的优点是:不需要任何表面活性剂、催化剂或模板。当暴露于植物提取物中时,水银离子被还原成银纳米粒子。采用紫外可见分光光度法、红外光谱法、扫描电镜法、粒径法和zeta电位法对纳米银的生物还原和稳定性进行了监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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