论文标题
使用中子衍射和其他技术
Structural and Magnetic Characterization of CuxMn1-xFe2O4 (x= 0.0, 0.25) Ferrites Using Neutron Diffraction and Other Techniques
论文作者
论文摘要
锰铁氧体(MNFE2O4)和铜掺杂锰铁氧体(MN0.75CU0.25FE2O4)通过固态烧结方法合成了软材料。从X射线衍射模式证实了相纯度和质量。然后对样品进行中子衍射实验,并使用FullProf软件包分析衍射数据。使用扫描电子显微镜(SEM)研究了软材料样品的表面形态。测量了晶体参数,结晶石参数,在尖晶石结构的A和B位点的占用率,在各个位置的原子的磁矩,对称性,氧气位置参数,键长等,并与参考数据进行比较。在MNFE2O4中,MN2+和Fe2+/3+阳离子共享八面体(A)和四面体(B)位置,此处主要由Fe2+和B位点占据,而MN则在0.825占用率时占据了MN。 Cu2+离子Cu0.25mn0.75Fe2O4主要占据B站点。铜主要占据八面体(16d)地点。立方晶格的长度随铜含量的增加而降低。使用中子衍射分析测量了磁性特性,即A或B位点磁矩,净磁矩等,并将其与通过VSM研究测得的大量磁性特性进行了比较。
Manganese ferrite (MnFe2O4) and copper doped manganese ferrite (Mn0.75Cu0.25Fe2O4) soft materials were synthesized through solid-state sintering method. The phase purity and quality were confirmed from x-ray diffraction patterns. Then the samples were subjected to neutron diffraction experiment and the diffraction data were analyzed using FullProf software package. The surface morphology of the soft material samples was studied using a scanning electron microscope (SEM). Crystal parameters, crystallite parameters, occupancy at A and B sites of the spinel structure, magnetic moments of the atoms at various locations, symmetries, oxygen position parameters, bond lengths etc. were measured and compared with the reference data. In MnFe2O4, both octahedral (A) and tetrahedral (B) positions are shared by Mn2+ and Fe2+/3+ cations, here A site is predominantly occupied by Fe2+ and B site is occupied by Mn at 0.825 occupancy. The Cu2+ ions in Cu0.25Mn0.75Fe2O4 mostly occupy the B site. Copper mostly occupy the Octahedral (16d) sites. The length of the cubic lattice decreases with the increasing Copper content. The magnetic properties, i.e. A or B site magnetic moments, net magnetic moment etc. were measured using neutron diffraction analysis and compared with the bulk magnetic properties measured with VSM studies.