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Phytochemical assisted synthesis of size and shape tunable gold nanoparticles and assessment of their catalytic activities

机译:植物化学辅助合成尺寸和形状可调金纳米粒子及其催化活性的评估

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摘要

A faster and environmentally viable phytochemical assisted reduction method of synthesizing gold nanoparticles (GNPs) is reported. Leaf extract of Amentotaxus assamica plant is used for the first time both as reducing and capping agent for GNPs. The size and shape of GNPs can be systematically tuned by varying the concentrations of metal ion and extract. The GNPs are characterized by microscopic, spectroscopic and diffractometric techniques. The microscopic results confirmed that when the concentration of HAuCl _(4) is increased, keeping the concentration of the plant extract fixed, the size increase is accompanied by formation of polygonal GNPs. However, when the concentration of plant extract is decreased, keeping the concentration of HAuCl _(4) the same, the population as well as the size of polygonal GNPs are increased. The results are further confirmed from UV-vis spectroscopic analysis in which all the samples show a major absorption peak at 537 nm, which is accompanied by another weak peak in the higher wavelength region as the polygonal GNPs are formed at higher HAuCl _(4) concentration. This longitudinal band red-shifted as the size of polygonal GNPs increased. X-ray diffraction studies suggest the formation of pure crystalline GNPs. These GNPs show excellent catalytic activity towards borohydride reduction of different isomeric nitrophenols.
机译:报道了合成金纳米颗粒(GNP)的较快和环保的植物化学辅助还原方法。 ASSAsamica植物的叶子提取物首次用于GNP的还原剂和封端剂。通过改变金属离子和提取物的浓度,可以系统地调整GNP的大小和形状。 GNP的特征在于微观,光谱和衍射方法。显微镜结果证实,当HauCl _(4)的浓度增加时,保持植物提取物的浓度固定,尺寸增加伴随着多边形GNP的形成。然而,当植物提取物的浓度降低时,保持Haucl _(4)的浓度相同,人口以及多边形GNP的尺寸增加。从UV-Vis光谱分析中进一步证实了结果,其中所有样品在537nm处显示出大量吸收峰,其伴随着较高波长区域中的另一个弱峰,因为多边形GNP在更高的Haucl _(4)处形成专注。这种纵向带向移位时,随着多边形GNP的尺寸而增加。 X射线衍射研究表明纯结晶GNP的形成。这些GNP朝着不同异构硝基苯酚的硼氢化硼还原的优异催化活性。

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