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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Nanoscale ferroelectricity in pseudo-cubic sol-gel derived barium titanate - bismuth ferrite (BaTiO3- BiFeO3) solid solutions
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Nanoscale ferroelectricity in pseudo-cubic sol-gel derived barium titanate - bismuth ferrite (BaTiO3- BiFeO3) solid solutions

机译:纳米级铁电性伪立方溶胶 - 凝胶衍生钛酸钡 - 铋铁氧体(BIFE3- BIFEO3)固溶体

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Single phase barium titanateebismuth ferrite ((1-x)BaTiO3-(x)BiFeO3, BTO-BFO) solid solutions were prepared using citric acid and ethylene glycol assisted sol-gel synthesis method. Depending on the dopant content the samples are characterized by tetragonal, tetragonal-pseudocubic, pseudocubic and rhombohedral structure as confirmed by Raman spectroscopy and XRD measurements. An increase of the BFO content leads to a reduction in the cell parameters accompanied by a decrease in polar distortion of the unit cell wherein an average particle size increases from 60 up to 350 nm. Non zero piezoresponse was observed in the compounds with pseudocubic structure while no polar distortion was detected in their crystal structure using X-ray diffraction method. The origin of the observed non-negligible piezoresponse was discussed assuming a coexistence of nanoscale polar and non-polar phases attributed to the solid solutions with high BFO content. A coexistence of the nanoscale regions having polar and non-polar character is considered as a key factor to increase macroscopic piezoresponse in the related compounds due to increased mobility of the domain walls and phase boundaries. (c) 2020 Elsevier B.V. All rights reserved.
机译:单相钡铁氧体titanateebismuth((1-X)为BaTiO3-(X)的BiFeO 3,BTO-BFO)使用柠檬酸和乙二醇辅助的溶胶 - 凝胶合成方法制备固溶体。根据不同的掺杂剂含量的样品是通过四方晶,正方晶,仿立方体,仿立方体和菱形结构,其特征在于拉曼光谱和X射线衍射测量证实。的BFO内容引线的在细胞中参数的单位单元的极性畸变伴随着降低的减少增加,其中,从60的平均粒径增大到350纳米。与仿立方体结构的化合物中观察到的非零压电响应而用X射线衍射法在其晶体结构没有检测到极性畸变。讨论了观察到的不可忽略的压电响应的起源是假设归因于与高BFO含量的固溶体纳米的极性和非极性相并存。具有极性和非极性字符纳米尺度区域A共存被认为是增加宏观压电响应于相关的化合物由于增加的畴壁和相界的移动性的关键因素。 (c)2020 Elsevier B.v.保留所有权利。

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