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Hydrothermally prepared nanocrystalline Mn-Zn ferrites:Synthesis and characterization

机译:水热制备纳米晶锰锌铁氧体的合成与表征

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Nanocrystalline particles of Mn_xZn~(1-x)Fe2O4 were prepared by chemical precipitation of hydroxides,followed by hydro thermal processing and freeze-drying.The synthesis involves the hydrolysis of aqueous metal precursors by using ammonia as precipitating agent.The chlorine ion concentration in the solution and the pH of the precipitation,are shown to play a crucial role in retaining the initial stoichiometry of the solution to the nanoparticles.The obtained products exhibited some interesting and unique features:they consisted of nanoparticles with sizes ranging from 5 to 25 nm,they had surface areas between 60 and 110 m2 g_1 and pore sizes in the mesopore region(i.e.8-20 nm).The produced materials were examined by powder X-ray diffraction for crystalline phase identification,scanning electron microscopy for grain morphology,high resolution transmission electron microscopy for particle size distribution and nitrogen sorption for surface area,pore volume and pore size distribution determination.The sintering of the ferrite powders was also studied by thermogravimetric analysis and dilatometry of the powders mixed with an organic binder to improve their compaction properties.
机译:通过氢氧化物的化学沉淀,水热处理和冷冻干燥制备纳米Mn_xZn〜(1-x)Fe2O4纳米粒子。合成过程涉及以氨水为沉淀剂水解金属前驱体。溶液和沉淀的pH值在保持溶液对纳米颗粒的初始化学计量方面起着至关重要的作用。获得的产品具有一些有趣而独特的特征:它们由5至25 nm的纳米颗粒组成的表面积在60至110 m2 g_1之间,中孔区域的孔径(即8-20 nm)。通过粉末X射线衍射检查所产生的材料以进行晶相鉴定,扫描电镜观察晶粒形态,高分辨率的透射电子显微镜,用于粒度分布和氮吸附,用于表面积,孔体积和孔径分布检测还通过热重分析和对与有机粘合剂混合的粉末进行了热膨胀分析来研究铁氧体粉末的烧结,以改善其压实性能。

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