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Structural and Magnetic properties of Ultrafine CoFe2O4 Nanoparticles

机译:超细COFE2O4纳米粒子的结构和磁性性能

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Nanosized Cobalt ferrite (CoFe2O4) particles are prepared through the sol-gel method using polyvinyl alcohol (PVA) as a chelating agent. The powder as prepared is annealed at three different temperatures (400°C, 500°C and 1000°C) for one hour. The X-ray diffraction patterns confirm the spinel structure of the samples. The XRD patterns of the samples indicate broad peaks and the full width at half maximum decreased with increasing annealing temperature. Infrared (IR) spectra of the samples confirm the presence of metal-oxygen complexes within the spinel lattice. The average particle size obtained from TEM micrographs demonstrates ultrafine particles having spherical morphology. The particle size of the annealed samples is in between 4.5-6.8 nm. The saturation magnetization (M_s) and remnant magnetization (M_r) of the samples show dependence on particle size and crystallinity of the samples. The highest saturation magnetization (78.1 emu/g) is achieved for the sample annealed at 1000°C having average particle size of 6.8 nm. The high saturation magnetization of the samples suggests the present method is suitable for obtaining nanocrystalline magnetic ferrites which is desirable for practical applications.
机译:纳米钴铁氧体(CoFe2O4)颗粒通过使用聚乙烯醇(PVA)作为螯合剂制备通过溶胶 - 凝胶法制备。制备的粉末在三个不同的温度(400℃,500℃和1000℃)下退火1小时。 X射线衍射图案确认样品的尖晶石结构。样品的XRD图案表示宽峰值和半最大宽度随着退火温度的增加而降低。样品的红外(IR)光谱证实了尖晶石晶格内的金属 - 氧气复合物。从TEM显微照片获得的平均粒度证明了具有球形形态的超细颗粒。退火样品的粒度在4.5-6.8nm之间。样品的饱和磁化(M_S)和残余磁化(M_R)显示对样品的粒度和结晶度依赖性。最高饱和磁化强度(78.1 emu / g)是在1000℃下退火的样品,平均粒径为6.8nm。样品的高饱和磁化强度表明本发明方法适用于获得用于实际应用所期望的纳米晶磁性铁氧体。

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