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Characterization and Magnetic Properties of Cobalt Nano-Particles Prepared by Metal Vapor Synthesis Technique
作者姓名:ShihuaWU  ShouminZHANG  WeipingHUANG  JuanSHI  BaoqingLI  YongqiSUN
作者单位:[1]DepartmentofChemistry,NankaiUniversity,Tianjin300071,China [2]DepartmentofChemistry,TianjinNormalUniversity,Tianjin300074,China
摘    要:The metal vapor synthesis technique was employed to prepare Co nanoparticles. The characteristics and properties of the particles were studied by transmission electron microscopy, X-ray diffraction, temperature-programmed desorption,chemisorption and magnetic measurements. The experimental results showed that the particle size of Co powders depended on the initial Co concentration in the toluene matrix, reaching average crystallite diameter of 1.5 nm for the highest concentration (6.4 at. pct) investigated. The particles with size of 10 nm exist, due to the agglomerates of microcrystallites. The Co particles were surrounded by a thin carbonaceous layer formed due to toluene decomposition on cocondate melt-down and subsequent warming to room temperature. The carbonaceous layer was composed primarily of C1 fragments. The Co powders demonstrated ferromagnetic behavior.

关 键 词:金属蒸汽合成  钴纳米颗粒  磁性  结构特征  物理性质

Characterization and Magnetic Properties of Cobalt Nano-Particles Prepared by Metal Vapor Synthesis Technique
ShihuaWU ShouminZHANG WeipingHUANG JuanSHI BaoqingLI YongqiSUN.Characterization and Magnetic Properties of Cobalt Nano-Particles Prepared by Metal Vapor Synthesis Technique[J].Journal of Materials Science & Technology,2003,19(5):422-424.
Authors:Shihua WU  Shoumin ZHANG  Weiping HUANG  Juan SHI  Baoqing LI  Yongqi SUN
Affiliation:Department of Chemistry, Nankai University, Tianjin 300071, China
Abstract:The metal vapor synthesis technique was employed to prepare Co nanoparticles. The characteristics and properties of the particles were studied by transmission electron microscopy, X-ray diffraction, temperature-programmed desorption, chemisorption and magnetic measurements. The experimental results showed that the particle size of Co powders depended on the initial Co concentration in the toluene matrix, reaching average crystallite diameter of 1.5 nm for the highest concentration (6.4 at. pct) investigated. The particles with size of 10 nm exist, due to the agglomerates of microcrystallites. The Co particles were surrounded by a thin carbonaceous layer formed due to toluene decomposition on cocondate melt-down and subsequent warming to room temperature. The carbonaceous layer was composed primarily of C1 fragments. The Co powders demonstrated ferromagnetic behavior.
Keywords:Metal vapor synthesis  Cobalt nanoparticles  Magnetization
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