溶剂燃烧法和陶瓷法低温合成MFe12O19 (M=Sr, Ca)及其表征

A. B. Borkar, B. Borkar, K. Pande, S. Choubey
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引用次数: 0

摘要

采用溶剂燃烧法和陶瓷法合成了六方磁铅石化合物CaFe12O19。采用x射线衍射技术(XRD)、扫描电镜(SEM)、能谱分析(EDS)和磁学研究对化合物进行了研究。XRD研究表明,溶剂燃烧法合成的样品CaFe12O19并非纯磁铅石结构结晶。由于锶的离子半径大于钙的离子半径,故其“d”值和(hkl)值与在a = 5.80 Ǻ和c = 22.15 Ǻ的六角形结晶结构钙中加入少量锶时略有不同。溶胶燃烧和陶瓷法扫描电镜图像表明,样品的形貌基本为六边形结构。能谱分析表明,在溶胶燃烧法和陶瓷法制备的样品中,Ca、Sr、Fe和O元素明显存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low Temperature Synthesis and Characterization of MFe12O19 (M=Sr, Ca) by Solvo-combustion and Ceramic Method Using Mathematical Analysis
Hexagonal Magnetoplumbite Compound CaFe12O19 were synthesized by two methods  namely  Solvo  Combustion  and  Ceramic methods respectively. The compounds were studied by X-ray diffraction technique (XRD), Scanning electron Microscope (SEM), energy dispersive spectroscopy (EDS) and Magnetic Studies. The XRD studies indicate the sample synthesized by Solvo Combustion Method CaFe12O19 doesnot crystallize purely in Magnetoplumbite structure. Its ‘d’ values and (hkl) are slightly different than when small amount of Strontium is added to calcium which crystallize in Hexagonal Structure with a = 5.80 Ǻ and c = 22.15 Ǻ since the ionic radius of Strontium  is  more than that of Calcium.  The SEM images by Solvo Combustion and Ceramic method nearly indicate the morphology of the samples to be Hexagonal structure. The EDS indicates the clear presence of element Ca, Sr, Fe and O in the Solvo combustion and ceramic method prepared sample.
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