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首页> 外文期刊>Bulletin of Materials Science >Relaxor behaviour in BaBi4Ti4O15 ceramics fabricated using the powders obtained by mechanochemically assisted synthesis route
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Relaxor behaviour in BaBi4Ti4O15 ceramics fabricated using the powders obtained by mechanochemically assisted synthesis route

机译:机械化学辅助合成途径制备的粉末制备的BaBi4Ti4O15陶瓷的弛豫行为

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摘要

Mechanochemically activated reactants were found to facilitate the synthesis of fine powders comprising 200-400 nm range crystallites of BaBi4Ti4O15 at a significantly lower temperature (700 A degrees C) than that of solid-state reaction route. Reactants (CaCO3, Bi2O3 and TiO2) in stoichiometric ratio were ball milled for 48 h to obtain homogeneous mixture. The evolution of the BaBi4Ti4O15 phase was systematically followed using X-ray powder diffraction (XRD) technique. Scanning electron microscopy (SEM) and transmission electron microscopy (TEM) were employed to probe its structural and microstructural details. The electron diffraction studies established the presence of correlated octahedral rotations and associated long-range polar ordering. High-resolution TEM imaging nevertheless revealed structural inhomogeneities leading to intergrowth defects. Dense BaBi4Ti4O15 ceramics with an average grain size of 0.9 mu m were fabricated using mechanochemically assisted synthesized powders at relatively low temperature (1000 A degrees C). The effect of grain size on the dielectric and relaxor behaviour of BaBi4Ti4O15 ceramics was investigated. Fine-grained ceramics (average grain size similar to 0.9 mu m) showed higher diffusion in phase transition, lower temperature of phase transition, lower Vogel-Fulcher freezing temperature and higher activation energy for the polarization reversal than those for coarse-grained ceramics (average grain size similar to 7 mu m) fabricated via the conventional solid-state reaction route.
机译:发现机械化学活化的反应物在比固态反应路线低得多的温度(700摄氏度)下促进了包含200-400 nm范围的BaBi4Ti4O15微晶的细粉的合成。将化学计量比的反应物(CaCO3,Bi2O3和TiO2)球磨48小时,以获得均匀的混合物。使用X射线粉末衍射(XRD)技术系统地跟踪了BaBi4Ti4O15相的演变。扫描电子显微镜(SEM)和透射电子显微镜(TEM)被用来探测其结构和微观结构细节。电子衍射研究确定了相关的八面体旋转和相关的远距离极性排序的存在。尽管如此,高分辨率TEM成像显示出导致共生缺陷的结构不均匀性。使用机械化学辅助合成粉末,在相对较低的温度(1000摄氏度)下制造了平均晶粒尺寸为0.9微米的致密BaBi4Ti4O15陶瓷。研究了晶粒尺寸对BaBi4Ti4O15陶瓷介电和弛豫性能的影响。与粗粒陶瓷(平均)相比,细粒陶瓷(平均粒径相似于0.9微米)显示出更高的相变扩散,更低的相变温度,更低的Vogel-Fulcher凝固温度和更高的极化反转活化能。通过常规的固态反应路线制得的颗粒尺寸类似于7μm)。

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