论文标题

在整个相边界区域的Sm掺杂Bifeo3陶瓷的晶体结构和磁性的演变

Evolution of the crystal structure and magnetic properties of Sm-doped BiFeO3 ceramics across the phase boundary region

论文作者

Karpinsky, D. V., Pakalniskis, A., Niaura, G., Zhaludkevich, D. V., Zhaludkevich, A. L., Latushka, S. I., Silibin, M., Serdechnova, M., Lukowiak, V. M. Garamus A., Strek, W., Kaya, M., Skaudzius, R., Kareiva, A.

论文摘要

通过乙二醇辅助的溶胶 - 凝胶合成方法制备了纳米尺寸结晶岩的samarium掺杂的BifeO3化合物。使用X射线衍射和SEM测量以及拉曼光谱和FTIR实验来阐明具有bi1-XSMXFEO3的化合物中晶体结构在显微镜和局部规模水平上的进化,其中x等于0至1。从0到1。磁化测量以及结构数据的结构,以确定磁性的结构,以确定磁性属性和晶体之间的结构。具有从x 0.1-0.2的化合物的特征在于由掺杂剂增加驱动的结构跃迁的序列,从极性菱形阶段到通过抗极性矫正相的存在,其特征在于非极点矫正相。在0.12至0.15至0.15到0.15到0.15到0.15到0.15到0.15到0.15到0.15到0.15到0.15到0.15到0.15到0.15,观察到了菱形和抗极性矫正相以及抗极性矫正相的共存以及抗极性矫正相的共存。与具有相似化学成分的陶瓷相比,具有单相菱形结构的化合物的特征是残留磁化强度的释放,但通过固态反应方法和具有显微镜大小结晶的陶瓷。讨论了结构失真,结构性失真的类型与残余磁化的发作之间的相关性,突出了通过修饰的Sol-Gel方法和常规固态反应技术制备的SM掺杂陶瓷观察到的晶体结构演化的差异和磁化的差异。

Samarium doped BiFeO3 compounds having nano-size crystallites were prepared by the ethylene glycol assisted sol-gel synthesis method. X-ray diffraction and SEM measurements as well as Raman spectroscopy and FTIR experiments were used to clarify the evolution of the crystal structure on microscopic and local scale levels in the compounds having formula Bi1-xSmxFeO3, where x equals from 0 to 1. Magnetization measurements along with the structural data were used to determine a correlation between magnetic properties and crystal structure of the compounds. The compounds with from x 0.1-0.2 are characterized by the sequence of the structural transitions driven by the dopant increase, from the polar rhombohedral phase to the non-polar orthorhombic phase via two-phase regions characterized by the presence of the anti-polar orthorhombic phase. The concentration regions ascribed to a coexistence of the rhombohedral and the anti-polar orthorhombic phases as well as theanti-polar orthorhombic and the non-polar orthorhombic phases are observed in the ranges from 0.12 to 0.15 and from 0.15 to 0.18 respectively. The compounds having single-phase rhombohedral structure are characterized by a release of remnant magnetization as compared to ceramics with similar chemical compositions but synthesized by the solid-state reaction method and having microscopic size crystallites. A correlation between the type of structural distortion, morphology of crystallites and an onset of remnant magnetization is discussed highlighting a difference in the evolution of crystal structure and magnetization observed for the Sm-doped ceramics prepared by modified sol-gel method and conventional solid-state reaction technique.

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