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首页> 外文期刊>CERAMICS INTERNATIONAL >Sol-gel synthesis of substoichiometric cobalt ferrite (CoFe2O4) spinels: Influence of additives on their stoichiometry and magnetic properties
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Sol-gel synthesis of substoichiometric cobalt ferrite (CoFe2O4) spinels: Influence of additives on their stoichiometry and magnetic properties

机译:溶胶 - 凝胶合成含量钴铁氧体(COFE2O4)尖晶石:添加剂对其化学计量和磁性的影响

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Spinel cobalt ferrites (CoFe2O4) with varying levels of substoichiometry were prepared via sol-gel synthesis with different combinations of citric acid, dextrose and PVP (polyvinylpyrrolidone). The gels, prepared from the metal nitrates, were dried at 110 degrees C, further treated at 850 degrees C and finally subjected to thorough structural and magnetic characterization in order to correlate the composition of the gel to the structural and magnetic properties displayed by the ferrites. The materials synthesized in the present work have shown to be rather irondepleted, reaching over 50% deficiency of the metal, which leaves the spinel lattice and forms Fe2O3 instead. The fuel/oxidant ratio and the thermal behavior of the xerogels exert a direct influence on the compositional variation of the prepared spinels, which could in turn be correlated to the magnetic properties displayed by the particles. A maximum in coercivity of 2154.4 Oe was achieved without the application of any additive to the nitrate precursors. On the other hand, the magnetic remanence displayed by the ferrites shows a linear relationship to the iron content in their chemical formula. The results open up the possibility of fine-tuning the structural and magnetic properties displayed by the spinel product via careful control of the composition of the reaction medium.
机译:通过溶胶 - 凝胶合成用不同组合的柠檬酸,葡萄糖和PVP(聚乙烯吡咯烷酮)制备具有不同水平的级别级别的尖晶石铁氧烷(COFE2O4)。由金属硝酸盐制备的凝胶,在110℃下干燥,在850℃下进一步处理,最后进行彻底的结构和磁性表征,以将凝胶的组成与铁氧体显示的结构和磁性相关联。在本作工作中合成的材料表明,相当甘然油,达到了超过50%的金属缺乏,这使尖晶石晶格和形成Fe 2 O 3。 Xerogels的燃料/氧化剂比率和热行为对所制备的尖晶石的组成变化产生直接影响,这又可以与颗粒显示的磁性相关。在不应用于硝酸盐前体的任何添加剂的情况下实现了2154.4 OE的最大矫顽力。另一方面,铁氧体显示的磁遗弃表现出与其化学式中的铁含量的线性关系。结果通过仔细控制反应介质的组成,开辟了微调尖晶石产品的结构和磁性的可能性。

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