Structural and Surface Morphology Transformation of Plant Assisted Silver Nanoparticles and Its Biological Applications

. P.JamilaJayanthi, I. Punithavathy, S. Jeyakumar, . T.Elavazhagan
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引用次数: 2

Abstract

Article history: Received 05 February 2019 Accepted 18 February 2019 Available online 25 March 2019 The preparation, optimization and application of biogenic nanomaterials have become the major division of study in nanotechnology. This study reports the single step; eco-friendly synthesis of silver nanoparticles using the aqueous extract of Tridax procumbens plant extracts with different extract concentrations (10 mL to 40 mL). The aqueous extract of Tridax procumbens showed significant potential for the fast reduction of silver ions without using any external agents. XRD pattern of Ag-NPs was indexed to face-centered cubic structure. The structural parameters of silver nanoparticles have been estimated and grain size ranged from 21 nm to 44 nm. The UV-vis absorbance spectrum was observed at 424 nm. The FT-IR analysis confirmed the secondary metabolites bind on surface of the AgNPs. SEM studies concluded morphological transformation of surface of the silver nanoparticles. Silver nanospheres were transformed in to rectangular silver nanosheets by increasing the extract concentration. Elemental silver formations were confirmed by EDAX studies. The antibacterial efficacies of synthesized nanosilver were carried out against different human bacterial pathogens and found to show significant activity. Bio-synthesis of Ag-NPs using Tridax procumbens appears to be cost effective, biodegradable and an alternative to conventional synthesis methods.
植物辅助银纳米颗粒的结构和表面形态转化及其生物学应用
文章历史:生物纳米材料的制备、优化和应用已成为纳米技术研究的主要领域。本研究报告了单步;利用不同萃取浓度(10 mL ~ 40 mL)的原藜草植物萃取物的水萃取物环保合成纳米银。在不使用任何外源试剂的情况下,原曲草水提物具有快速还原银离子的潜力。Ag-NPs的XRD图谱为面心立方结构。测定了银纳米颗粒的结构参数,粒径范围为21 ~ 44 nm。在424 nm处观察其紫外-可见吸收光谱。FT-IR分析证实次级代谢物结合在AgNPs表面。扫描电镜研究了纳米银表面的形态变化。通过提高萃取物浓度,使银纳米球转化为矩形银纳米片。EDAX研究证实了元素银的形成。对合成的纳米银对不同的人类细菌病原体进行了抑菌实验,发现其具有显著的抑菌活性。生物合成Ag-NPs使用三甘蔗渣似乎具有成本效益,可生物降解和替代传统的合成方法。
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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