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Green synthesis of stabilized spherical shaped gold nanoparticles using novel aqueous Elaeis guineensis (oil palm) leaves extract

机译:使用新型含含含糖(油棕)叶提取物的稳定球形金纳米粒子的绿色合成

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In the last decade, development of bioinspired protocols to synthesize gold nanoparticles (AuNPs) using plants and their extracts have been dealt by researchers due to their low cost, renewability and non-toxic features. A simple, cheap and ecofriendly method is reported to synthesize stabilized AuNPs of size 35-75 nm at room temperature using aqueous Elaeis guineensis (oil palm) leaves extract without addition of any external agent. Oil palm leaves mediated AuNPs were characterized using FTIR, UV-vis spectrophotometer, EDAX, XPS, FESEM, TEM, DLS and TGA. FTIR spectra results revealed contribution of phenolic, carboxylic, amines and amides in reduction of trivalent gold ions and stabilization of formed gold atoms. Reaction solution color change and UV-vis spectra confirmed reduction of gold ions to generate gold atoms. Reaction mechanism explained the role of phenolic compounds in reduction reaction using FTIR and UV-vis spectra results. EDAX and XPS results further validated the formation of metallic gold particles through bioreduction of gold ions. Crystal structure of metallic gold particles was confirmed through XRD peaks indexing to (111), (200), (220) and (311) planes. TEM and FESEM particles size measurements exhibited the formation of nanostructured AuNPs. Synthesis of well scattered and spherical shaped AuNPs was revealed through FESEM and TEM images. The excellent stability of AuNPs was shown through high negative zeta potential value (-14.7 +/- 4.68 mV) and uniform dispersion in aqueous media. Our results disclosed the excellent potential of Elaeis guineensis (oil palm) leaves as reducing and stabilizing agents in green synthesis of well scattered spherical shaped AuNPs, which can be employed as strong candidates in medical drug delivery and industrial applications. (C) 2017 Elsevier B.V. All rights reserved.
机译:在过去的十年中,通过它们的成本低,可再生性和无毒特征,研究人员已经通过研究人员换取了使用植物合成金纳米颗粒(AUNP)的生物透露协议的发展,并通过研究人员进行了处理。据报道,使用Elaeisguineensis(油棕)叶提取物在室温下在室温下合成稳定的尺寸35-75nm的稳定Aunps的稳定性,而不添加任何外部剂。使用FTIR,UV-VIS分光光度计,eDAX,XPS,FESEM,TEM,DLS和TGA,表征油棕叶介导的AUNP。 FTIR光谱结果揭示了酚醛,羧酸,胺和酰胺在减少三价金离子和形成的金原子的稳定中的贡献。反应溶液颜色变化和UV-Vis光谱证实了金离子的减少以产生金原子。反应机制解释了酚类化合物在使用FTIR和UV-VIS光谱的还原反应中的作用。 eDAX和XPS结果进一步通过金离子的生物测定来验证了金属金颗粒的形成。通过XRD峰值指数至(111),(200),(220)和(311)平面,确认金属金颗粒的晶体结构。 TEM和FESEM颗粒尺寸测量表现出纳米结构剖砖的AUNP。通过FESEM和TEM图像揭示了井散射和球形AUNP的合成。通过高阴性Zeta电位值(-14.7 +/- 4.68mV)和水性介质中均匀分散示出了AUNP的优异稳定性。我们的研究结果公开了ElaeisGuineensis(油棕)叶片的优异潜力,作为井散散的球形AUNP的绿色合成中的还原和稳定剂,这可以用作医用药物递送和工业应用中的强候选者。 (c)2017年Elsevier B.V.保留所有权利。

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