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Mechanosynthesis of the Whole Y1−xBixMn1−xFexO3 Perovskite System: Structural Characterization and Study of Phase Transitions

机译:整个Y1-xBixMn1-xFexO3钙钛矿体系的机械合成:结构表征和相变研究

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摘要

Perovskite BiFeO3 and YMnO3 are both multiferroic materials with distinctive magnetoelectric coupling phenomena. Owing to this, the Y1−xBix Mn1−xFexO3 solid solution seems to be a promising system, though poorly studied. This is due to the metastable nature of the orthorhombic perovskite phase of YMnO3 at ambient pressure, and to the complexity of obtaining pure rhombohedral phases for BiFeO3-rich compositions. In this work, nanocrystalline powders across the whole perovskite system were prepared for the first time by mechanosynthesis in a high-energy planetary mill, avoiding high pressure and temperature routes. Thermal decomposition temperatures were determined, and structural characterization was carried out by X-ray powder diffraction and Raman spectroscopy on thermally treated samples of enhanced crystallinity. Two polymorphic phases with orthorhombic Pnma and rhombohedral R3c h symmetries, and their coexistence over a wide compositional range were found. A gradual evolution of the lattice parameters with the composition was revealed for both phases, which suggests the existence of two continuous solid solutions. Following bibliographic data for BiFeO3, first order ferroic phase transitions were located by differential thermal analysis in compositions with x ≥ 0.9. Furthermore, an orthorhombic-rhombohedral structural evolution across the ferroelectric transition was characterized with temperature-dependent X-ray diffraction.
机译:钙钛矿BiFeO3和YMnO3都是具有独特的磁电耦合现象的多铁材料。因此,尽管研究不足,但Y1-xBix Mn1-xFexO3固溶体似乎是一个很有前途的系统。这是由于在环境压力下YMnO3的正交晶钙钛矿相具有亚稳态的特性,并且由于要获得富含BiFeO3的组合物纯菱形面相的复杂性。在这项工作中,通过在高能行星磨机中进行机械合成,避免了高压和高温路线,首次制备了整个钙钛矿体系中的纳米晶体粉末。测定热分解温度,并通过X射线粉末衍射和拉曼光谱对增强结晶度的热处理样品进行结构表征。发现了具有正交晶型Pnma和菱形R3c h对称性的两个多态相,并且它们在宽的组成范围内共存。揭示了两相晶格参数随组成的逐渐变化,这表明存在两个连续的固溶体。根据BiFeO3的书目数据,通过差热分析在x≥0.9的成分中找到一阶铁性相变。此外,通过温度依赖性X射线衍射表征了跨铁电跃迁的斜方-菱面体结构演变。

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