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Behavior of precipitation and morphological, structural properties during the synthesis of spherical Ni and Ni0.95M0.05(M=Cu, Cr, Co, Fe) nano-particles

机译:球形Ni和Ni0.95M0.05(M = Cu,Cr,Co,Fe)纳米粒子的合成过程中的析出行为和形态结构特征

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Spherical Ni and Ni0.95M0.05(M=Cu, Cr, Co, Fe) nano-particles were synthesized using hydrazine reduction method. The objective of this study is to investigate how the different metallic species affect the reduction rate when nano-sized metallic particles are synthesized by the precipitation method. It was found that the pH and reaction temperature had significant influence over the size and morphology of the synthesized metallic nano-particles. Ni0.95Cu0.05 solution showed highest reduction precipitation rate, while Ni0.95Cr0.05 showed slowest rate among the metallic species investigated in this study. At higher reaction temperature, the precipitated metallic particles showed higher degree of crystallinity. The particles synthesized at higher the pH had smaller surface area because the surface of the particles became smoother. It was found that the crystallographic lattice either contract or expand depending on the substituting metallic species. It is concluded from this study that the morphology and size of the spherical Ni and Ni0.95M0.05 nano-particles can be controlled by solution temperature and pH as well as metallic species added. This is due to different reaction rate resulted from difference in reduction potential and activation energy at different temperature and pH.
机译:采用肼还原法合成了球形Ni和Ni0.95M0.05(M = Cu,Cr,Co,Fe)纳米粒子。这项研究的目的是研究当通过沉淀法合成纳米级金属颗粒时,不同的金属物种如何影响还原速率。发现pH和反应温度对合成的金属纳米颗粒的尺寸和形态具有显着影响。在该研究中,Ni0.95Cu0.05溶液显示出最高的还原沉淀速率,而Ni0.95Cr0.05溶液显示出最慢的还原速率。在较高的反应温度下,沉淀的金属颗粒显示出较高的结晶度。在较高pH下合成的颗粒具有较小的表面积,因为颗粒的表面变得更光滑。发现晶体晶格根据取代的金属种类而收缩或扩展。从这项研究得出的结论是,球形Ni和Ni0.95M0.05球形纳米颗粒的形貌和尺寸可以通过溶液温度和pH值以及添加的金属种类来控制。这是由于在不同温度和pH下还原电位和活化能的差异导致反应速率不同。

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