Crystal structure, piezoelectric and magnetic properties of solid solutions BiMn1-xFexO3 (x ≤ 0.4)

IF 0.2 Q4 FORESTRY
M. Silibin, D. Kiselev, S. I. Latushko, D. V. Zheludkevich, P. Sklyar, D. Karpinsky
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Abstract

Сrystal structure, piezoelectric and magnetic properties of solid solutions BiMn1-xFexO3 (x ≤ 0.4) prepared by solid-phase reactions from a stoichiometric mixture of simple oxides at high pressures and temperatures have been studied. The structure of the compounds is characterized by the concentration driven phase transition from the monoclinic structure to the orthorhombic structure at x ≈ 0.2; wherein the ordering dz2 of the orbitals of Mn3+ ions is destroyed, and the inhomogeneous magnetic state is stabilized. Solid solutions with 0.2 ≤ x ≤ 0.4 are characterized by a nonzero piezoelectric response, wherein both ferroelectric and magnetic domain structures exist, the ferroelectric switching voltage decreases with an increase of iron ions concentration, while the residual magnetization value decreases. The maximum value of the piezoresponse signal is observed in the compound BiMn0.7Fe0.3O3. The work clarifies the relationship between the chemical composition, the crystal structure, piezoelectric and magnetic properties of solid solutions BiMn1-xFexO3. The presence of both magnetic and electric dipole ordering indicates the perspectives for the practical usage of such materials. 
固溶体BiMn1-xFexO3的晶体结构、压电和磁性能(x≤0.4)
本文研究了简单氧化物在高温高压化学计量混合物固相反应制备的BiMn1-xFexO3 (x≤0.4)固溶体的结构、压电和磁性能。化合物的结构特点是在x≈0.2处由单斜结构向正交结构的浓度驱动相变;其中,破坏了Mn3+离子轨道的有序dz2,稳定了非均匀磁态。0.2≤x≤0.4的固溶体具有非零压电响应,同时存在铁电畴和磁畴结构,铁电开关电压随铁离子浓度的增加而降低,剩余磁化值减小。在化合物BiMn0.7Fe0.3O3中观察到最大的压响应信号。阐明了固溶体BiMn1-xFexO3的化学成分、晶体结构、压电和磁性能之间的关系。磁偶极序和电偶极序的存在为这种材料的实际应用指明了前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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