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Effective Parameters in the Formation of Ni-Nanoparticles

机译:镍纳米粒子形成的有效参数

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摘要

The synthesis of nickel nanoparticles with various grain sizes has been achieved by spontaneous autocatalytic reduction in alcohol-water solution. It was found that, the concentration of NaOH and hydrazine catalysts play significant role in the formation of resultant nanoparticles. Investigations of different samples revealed that, a single phase nickel can be obtained at pH value 13.5 which was supported by XRD and FTIR analyses. The phase structures and morphologies of the Ni-nanoparticles have been carried out by using XRD and SEM. The crystallography studies of the samples indicate that resultant particles were crystalline fcc structure with average diameter sizes about 6.5 nm at room temperature. The nanoparticle sizes decreased by increasing of lattice constant and, increased by raising of the solution temperature from 25-175 °C. Also, the AAS analyses indicated that the Ni concentration in mixed solution was high at higher catalyst concentration. The SEM images of the samples showed the particle sizes were narrow (ca. 50-80 nm) at pH value 13.5 and solution temperature 25 °C.
机译:通过在乙醇-水溶液中自发自动催化还原,可以实现各种粒径的镍纳米粒子的合成。已经发现,NaOH和肼催化剂的浓度在所得纳米颗粒的形成中起重要作用。对不同样品的研究表明,在XRD和FTIR分析的支持下,可以在pH值为13.5的情况下获得单相镍。镍纳米粒子的相结构和形貌已通过XRD和SEM进行了研究。样品的晶体学研究表明,所得颗粒为结晶的fcc结构,室温下平均直径约为6.5 nm。纳米颗粒尺寸通过增加晶格常数而减小,并且通过将溶液温度从25-175°C升高而增大。另外,AAS分析表明,在较高的催化剂浓度下,混合溶液中的Ni浓度较高。样品的SEM图像显示,在pH值为13.5和溶液温度为25°C时,粒径较窄(约50-80 nm)。

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