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首页> 外文期刊>Defence Science Journal >Effect of Ag+ ion Concentration on the Reaction Kinetics and Shape of Nanoparticles Synthesised by Green Chemical Approach
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Effect of Ag+ ion Concentration on the Reaction Kinetics and Shape of Nanoparticles Synthesised by Green Chemical Approach

机译:Ag +离子浓度对绿色化学合成纳米颗粒反应动力学和形状的影响

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The effect of varying Ag+ ion concentration on the green chemical reaction with a fixed tea aliquot concentration has been studied in detail with the help of UV-visible absorption spectra. With increase in the concentration of Ag+ solution the position of surface plasmon band systematically increased from 435 nm 450 nm. The reaction followed first order kinetics and the rate of reaction increased in a linear fashion with k = 3.54 x 10(4) min(-1) for 0.5 mL to k = 1.86 x 10(-3) min(-1) for 3.0 mL Ag+ solution. X-ray diffraction patterns showed an enhanced (200) reflection for 3.0 mL Ag sample. The shape of Ag nanoparticles could be effectively tuned from spherical to cuboid with increase in silver content as evidenced from scanning electron and transmission electron micrographs. The average particle size of Ag NPs increased from 25 nm to 55 nm with increase in the Ag+ content of the reaction.
机译:在紫外可见吸收光谱的帮助下,已详细研究了以固定的茶等分试样浓度改变Ag +离子浓度对绿色化学反应的影响。随着Ag +溶液浓度的增加,表面等离激元能带的位置从435 nm逐渐增加到450 nm。反应遵循一级动力学,反应速率以线性方式增加,其中0.5 mL的k = 3.54 x 10(4)min(-1)到3.0的k = 1.86 x 10(-3)min(-1)毫升Ag +溶液。 X射线衍射图显示3.0 mL Ag样品的反射增强(200)。从扫描电子和透射电子显微照片可以看出,随着银含量的增加,Ag纳米颗粒的形状可以有效地从球形变为长方体。随着反应中Ag +含量的增加,Ag NP的平均粒径从25nm增加到55nm。

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