Novel Synthesis and Magnetic Properties of PVP Capped Cobalt Nanostructures

Dalavi Sb, Raj Mm
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引用次数: 1

Abstract

Novel polyol methodologies (named as: route-1 and route-2) have been developed for synthesis of PVP capped nanostructured Co in organic (DMF) medium at lower temperature of 110oC. Co nanoparticles (nps) crystallize in hcp and fcc structures with average crystallite size of 16.4 nm and 37.1 nm, for route-1 and route-2, respectively. TEM micrographs show chain-like and nearly spherical nanostructures for Co nps synthesized via route-1 and route-2, respectively. We could obtain the maximum value of MS and Hc, i.e., 167 emu/g and 357 Oe, respectively, for nanostructured Co synthesized via route-1 at 100 K. Variations in saturation magnetizations (Ms) and coercivity (Hc) values have been explained mainly on the basis of fine particle size, shape, surface and altered crystal anisotropies.
新型PVP覆盖钴纳米结构的合成及其磁性能研究
新的多元醇方法(命名为:route-1和route-2)已被开发用于在有机(DMF)介质中在较低温度下合成PVP覆盖的纳米结构Co。在路径1和路径2中,Co纳米颗粒以hcp和fcc结构结晶,平均晶粒尺寸分别为16.4 nm和37.1 nm。TEM显微图显示,通过路径1和路径2合成的Co - nps分别具有链状和近球形纳米结构。通过1路合成的纳米结构Co在100 K下,MS和Hc的最大值分别为167 emu/g和357 Oe。饱和磁化强度(Ms)和矫顽力(Hc)值的变化主要是根据细颗粒的大小、形状、表面和晶体各向异性的变化来解释的。
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