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Pressure-induced structural phase transitions in the multiferroic four-layer Aurivillius ceramic Bi5FeTi3O15

机译:多体性四层AURIVILLIUS陶瓷BI5FETI3O15中的压力诱导的结构相转变

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The structural stability of the multiferroic four-layer Aurivillius ceramic Bi5FeTi3O15 (BFTO) under hydrostatic pressure was investigated in situ by synchrotron X-ray powder diffraction (SXRPD) and Raman spectroscopy. Measurements performed up to 15 GPa allowed the identification of two well-defined structural phase transitions. The orthorhombic phase (at ambient conditions) transforms into a tetragonal one around 3.2 GPa and a new orthorhombic phase rises around 7.5 GPa. Both phase transitions are evidenced by the pressure dependence of the lattice parameters and vibrational mode frequencies. The analysis of the induced strain indicates that the transitions are of second-order and first-order, respectively. Subtle changes in the Raman spectra and powder patterns suggest the onset of a new phase around 10.5 GPa.
机译:通过同步X射线粉末衍射(SXRPD)和拉曼光谱,原位研究了静压压力下的多学四层Aurivillius陶瓷Bi5Feti3O15(BFTO)的结构稳定性。 测量最多15GPa允许识别两个明确的结构相位过渡。 正晶相(在环境条件下)转化为四方,一个大约3.2GPa,新的正交相升高约7.5GPa。 两个相转变通过晶格参数和振动模式频率的压力依赖性证明。 对诱导应变的分析表明过渡分别是二阶和一阶。 拉曼光谱和粉末图案的微妙变化表明新阶段的开始约为10.5GPa。

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