Department of Chemistry, University of Liverpool, Liverpool L69 7ZD, UK.
J Am Chem Soc. 2012 Apr 4;134(13):5836-49. doi: 10.1021/ja210698e. Epub 2012 Mar 20.
Perovskite oxides with Bi(3+) on the A site are of interest as candidate replacements for lead-based piezoelectric ceramics. Current understanding of the chemical factors permitting the synthesis of ambient-pressure-stable perovskite oxides with Bi(3+) on the A site is limited to information derived from average structures. The local structure of the lead-free ferroelectric perovskite Bi(Ti(3/8)Fe(2/8)Mg(3/8))O(3) is studied by reverse Monte Carlo (RMC) modeling of neutron scattering data. The resultant model is consistent with the structure derived from diffraction but reveals key extra structural features due to correlated local displacements that are inaccessible from the average unit cell. The resulting structural picture emphasizes the need to combine symmetry-averaged long-range and local analysis of the structures of compositionally complex, substitutionally disordered functional materials. Local correlation of the off-axis displacements of the A site cation produces monoclinic domains consistent with the existence of displacement directions other than R (<111>(p)) or T (<100>(p)). The Bi displacements are correlated ferroelectrically both in the polar direction and orthogonal to it, providing evidence of the presence of monoclinic domains. The octahedral cation environments reveal distinct differences in the coordination geometry of the different B site metal ions. The local nature of these deviations and correlations makes them inaccessible to long-range averaged techniques. The resulting local structure information provides a new understanding of the stability of pure Bi(3+) A site perovskite oxides.
A 位上的 Bi(3+) 钙钛矿氧化物作为含铅压电陶瓷的替代品引起了人们的兴趣。目前,对于 A 位上具有 Bi(3+) 的常压稳定钙钛矿氧化物的合成,人们仅能从平均结构中获得有关化学因素的信息。本研究采用基于中子散射数据的反蒙特卡罗(RMC)建模,对无铅铁电钙钛矿 Bi(Ti(3/8)Fe(2/8)Mg(3/8))O(3) 的局部结构进行了研究。得到的模型与衍射结构一致,但揭示了由于局部相关位移而导致的关键额外结构特征,这些特征是从平均晶胞中无法获得的。所得结构图像强调了需要结合复杂组成、取代无序功能材料的结构的对称平均长程和局部分析。A 位阳离子的非轴向位移的局部相关性产生了单斜畴,这与 R(<111>(p))或 T(<100>(p))以外的位移方向的存在一致。Bi 位移在极向和与之正交的方向上具有铁电性相关性,这为单斜畴的存在提供了证据。八面体阳离子环境揭示了不同 B 位金属离子的配位几何形状存在明显差异。这些偏差和相关性的局部性质使得它们无法通过长程平均技术来研究。所得的局部结构信息提供了对纯 Bi(3+)A 位钙钛矿氧化物稳定性的新认识。