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Investigation of the effective parameters on the synthesis of Ni-ferrite nanocrystalline powders by coprecipitation method

机译:共沉淀法合成镍铁氧体纳米晶粉的有效参数研究

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摘要

In this work, synthesis of nanostructured NiFe2O4 powders by coprecipitation method using novel precursors, followed by calcination was investigated for the first time. The synthesis was started by dissolving Fe and Ni chlorides and ammonium ferrous sulfate in deionized water. After stirring, the precipitating agent of NaOH was added to the solution and after 1 h aging, the resultant precipitates were washed with deionized water and acetone. Then the powder was characterized and the effects of different parameters such as molarity of precipitant, calcination temperature and the molar ratio of Ni2+ ion to the total iron ions were studied. It is concluded that an increase in molarity of precipitant can decrease the calcination temperature. The best conditions giving a single phase Ni-ferrite were using of 2.2 molar NaOH, calcination temperature of 900 degrees C and the molar ratio of nickel to iron as 0.5. The crystallite size of resulting ferrites was below 50 nm.
机译:在这项工作中,首次研究了使用新型前体通过共沉淀法合成纳米结构的NiFe2O4粉末,然后进行了煅烧。通过将Fe和Ni氯化物和硫酸亚铁铵溶解在去离子水中开始合成。搅拌后,将NaOH沉淀剂加入该溶液中,并在1小时陈化后,将所得沉淀物用去离子水和丙酮洗涤。然后对粉末进行了表征,并研究了诸如沉淀剂的摩尔浓度,煅烧温度以及Ni2 +离子与总铁离子的摩尔比等不同参数的影响。结论是,增加沉淀剂的摩尔浓度可以降低煅烧温度。给出单相镍铁氧体的最佳条件是使用2.2摩尔的NaOH,900℃的煅烧温度以及镍与铁的摩尔比为0.5。所得铁氧体的微晶尺寸小于50nm。

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