金、银纳米颗粒的快速绿色合成

D. Sant, Tejal Gujarathi, S. Harne, Sougata Ghosh, Rohini Kitture, S. Kale, B. Chopade, K. Pardesi
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引用次数: 69

摘要

开发一种环保、可靠、快速的利用生物体系合成纳米颗粒的方法是纳米技术的一个重要发展方向。黄芪的抗氧化潜力和药用价值吸引了我们利用它来生物合成金和银纳米粒子(AuNPs和AgNPs)。本文报道了菲立蓬叶水提物在绿色合成AuNPs和AgNPs中的应用。采用紫外-可见光谱法监测各参数对纳米颗粒合成的影响。合成AuNPs的最佳条件为:1∶1的原始提取液,pH为11,5 mM的四氯金酸;合成AgNPs的最佳条件为:1∶1的原始提取液,pH为12,9 mM的硝酸银。通过TEM, SAED, XRD, EDS, FTIR和DLS分析对纳米颗粒进行了表征。结果表明,AuNPs和AgNPs具有各向异性。单晶AuNPs和多晶AgNPs的尺寸为10至18纳米。EDS和XRD分析证实了元素金和银的存在。FTIR分析显示,提取物可能通过-NH2基团与AuNPs结合,通过C=C基团与AgNPs结合。这些由生物封盖剂稳定的纳米颗粒可以进一步用于生物医学应用。
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Adiantum philippense L. Frond Assisted Rapid Green Synthesis of Gold and Silver Nanoparticles
Development of an ecofriendly, reliable, and rapid process for synthesis of nanoparticles using biological system is an important bulge in nanotechnology. Antioxidant potential and medicinal value of Adiantum philippense L. fascinated us to utilize it for biosynthesis of gold and silver nanoparticles (AuNPs and AgNPs). The current paper reports utility of aqueous extract of A. philippense L. fronds for the green synthesis of AuNPs and AgNPs. Effect of various parameters on synthesis of nanoparticles was monitored by UV-Vis spectrometry. Optimum conditions for AuNPs synthesis were 1 : 1 proportion of original extract at pH 11 and 5 mM tetrachloroauric acid, whereas optimum conditions for AgNPs synthesis were 1 : 1 proportion of original extract at pH 12 and 9 mM silver nitrate. Characterization of nanoparticles was done by TEM, SAED, XRD, EDS, FTIR, and DLS analyses. The results revealed that AuNPs and AgNPs were anisotropic. Monocrystalline AuNPs and polycrystalline AgNPs measured 10 to 18 nm in size. EDS and XRD analyses confirmed the presence of elemental gold and silver. FTIR analysis revealed a possible binding of extract to AuNPs through –NH2 group and to AgNPs through C=C group. These nanoparticles stabilized by a biological capping agent could further be utilized for biomedical applications.
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