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Surface Properties of Inorganic Coated Fe2O3 Nanoparticles Characterized by XPS
XPS研究Fe2O3纳米粒子表面包覆无机膜

Keywords: coated nanoparticles,XPS,heterojunction
Fe2O3
,复合纳米粒子,表面包覆,无机膜,XPS,异质结,氧化铁,金属磁记录粉,磁性能

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Abstract:

Coating the surface of goethite nanoparticles by Si, Co oxides layer is one of the most important methods to improve the magnetic properties of metal magnetic recording particles. The surface electronic properties of the coated nanoparticles were studied by using XPS. Results show that there is a close, uniform, firm and ultra thin SiO2 layer formed on the surface of hematite nanoparticles. Silica coating treatment changes the properties of the hematite cores significantly since the binding energy of Fe 2p electrons shows significant shift related to the spectrum of the untreated hematite particles. The chemical shift of the binding energy is more than 2.7eV. A possible interpretation for the shift of such spectral features is that the contact interface surface of silica layer and the hematite particle surface is similar to P-N heterojunction. The cobalt oxides are adsorbed on part of the crystal face of Fe2O3 particles, and the binding energy of whole XPS spectrum mainly shows physical shift about 4.4eV due to the surface charge.

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