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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Influence of Y and La substitution on particle size, structural and magnetic properties of nanosized nickel ferrite prepared by using citrate precursor method
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Influence of Y and La substitution on particle size, structural and magnetic properties of nanosized nickel ferrite prepared by using citrate precursor method

机译:Y和La置换对柠檬酸盐前驱体法制备的纳米铁氧体粒度,结构和磁性的影响

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摘要

The compounds with the formulas NiFe2O4, NiFe1.9Y0.1O4 and NiFe1.9La0.1O4 were prepared by citrate precursor method and followed by heat treatment in air at 600 degrees C for 5 h. Crystal structure, valence state, chemical bonding and composition of the samples were studied rigorously by XRD, SXRD, XANES, FTIR and ICP-AES. Rietveld refinement of XRD and SXRD patterns reveals that the samples crystallize in single spinel phase with almost inverted structure in which the substituted ions Y3+ and La3+ locate in the octahedral sites and about ten percents of nickel atoms were found at the tetrahedral sites. Morphology and particle size were studied by SEM and TEM. The results show that the samples are composed of clustered nanoparticles with mean particle size decreases approximately from 20 nm in NiFe2O4 sample to 10 nm in the substituted ones. The magnetic measurements were carried out by means of a VSM. Spontaneous magnetization, magnetic coercivity, Curie temperature, superparamagnetic transition temperature, interparticle interaction energy and effective anisotropy were determined and explained on the basis of the surface and finiteesize effects and cation distribution. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过柠檬酸盐前体方法制备具有化学式NiFe2O4,NiFe1.9Y0.1O4和NiFe1.9La0.1O4的化合物,然后在空气中于600摄氏度下热处理5小时。用XRD,SXRD,XANES,FTIR和ICP-AES对样品的晶体结构,价态,化学键和组成进行了严格的研究。 XRD和SXRD图案的Rietveld精炼显示,样品以几乎完全倒置的结构在单尖晶石相中结晶,其中取代离子Y3 +和La3 +位于八面体位置,并且在四面体位置发现了约百分之十的镍原子。通过SEM和TEM研究了形态和粒径。结果表明,样品由簇状纳米颗粒组成,平均粒径从NiFe2O4样品中的约20 nm减小到取代纳米颗粒中的10 nm。磁性测量是通过VSM进行的。根据表面和有限化效应以及阳离子分布,确定并解释了自发磁化强度,矫顽磁力,居里温度,超顺磁性转变温度,粒子间相互作用能和有效各向异性。 (C)2015 Elsevier B.V.保留所有权利。

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