稀土离子与跃迁离子的交换作用增强了BiFeO3的多铁性和光学性质

S. Kumari, K. Anand, Mohd Alam, L. Ghosh, Srishti Dixit, Rahul K Singh, A. Jain, S. Yusuf, Chetna Gautam, Anup K. Ghosh, A. Mohan, S. Chatterjee
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摘要

本文对采用固相法合成的Bi0.90Tb0.1Fe0.90Mn0.1O3体系进行了实验分析。进行了紫外可见测量,获得了更小的带隙(即半导体型行为)。用X射线衍射和中子衍射测量分析了该体系的结构相。结构-相分析表明,该体系包含两种核相(菱形结构[R3c空间群]和正交结构[Pn21a空间群])。此外,还发现键角有较大的弯曲,并通过中子衍射证实了Bi0.90Tb0.1Fe0.90Mn0.1O3体系存在带核相的磁相。磁矩-温度(M-T)曲线表明,该体系的nsamel转变温度为568 K。磁化数据显示,与母体化合物相比,在室温下磁场与磁矩(M-H)曲线中表现出弱铁磁型行为,磁性能得到增强。从介电测量来看,介电常数增大,损耗减小。
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Enhancement of Multiferroic and Optical Properties in BiFeO3 Due to Different Exchange Interactions Between Transition and Rare Earth Ions
An experimental analysis of the Bi0.90Tb0.1Fe0.90Mn0.1O3 system synthesized via the solid‐state method is presented in this report. UV–visible measurements are carried out and a smaller bandgap (i.e., semiconductor‐type behavior) is obtained. The structural phase of the present system is analyzed with X‐ray diffraction and neutron diffraction measurement. Structural‐phase analysis reveals that the system contains two nuclear phases (rhombohedral structure [R3c space group] with orthorhombic [Pn21a space group]). Moreover, also more bending in the bond angle is found, and the existence of a magnetic phase with a nuclear phase for the Bi0.90Tb0.1Fe0.90Mn0.1O3 system is also confirmed by neutron diffraction. The magnetic moment versus temperature (M–T) curve demonstrates that the system's Néel transition temperature is at 568 K. The magnetization data show enhancement in the magnetic property by displaying the weak ferromagnetic‐type behavior at room temperature in the magnetic field versus magnetic moment (M–H) curve as compared to the parent compound. From dielectric measurement, the dielectric constant increases while the loss decreases.
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