Punetha Pooja, Adhikary Gobinda Das, Senyshyn Anatoliy, Nukala Pavan, Ranjan Rajeev
Department of Materials Engineering, Indian Institute of Science, Bangalore 560012, India.
Centre for Nanoscience and Engineering, Indian Institute of Science, Bangalore 560012, India.
ACS Appl Mater Interfaces. 2025 Jun 4;17(22):32615-32624. doi: 10.1021/acsami.5c04245. Epub 2025 May 23.
Among Pb-free piezoelectrics, NaBiTiO (NBT)-based ferroelectric systems have a unique distinction of offering a complex interplay of ferroelectric and nonferroelectric (in-phase octahedral tilt) structural instabilities, influencing its ferroelectric, dielectric, and electromechanical behavior. The morphotropic phase boundary (MPB) system like (1 - )NaBiTiO-KBiTiO (NBT-KBT) is where this complexity plays out in full measure. While consistent with the conventional view of the MPB with a consensus regarding the existence of composition driven rhombohedral-tetragonal ferroelectric-ferroelectric instability at ≈ 0.20, this system presents a puzzle by exhibiting considerable structural disorder and property anomalies at ≈ 0.40 within the tetragonal ferroelectric composition regime. Here, we exploit the mutual complementarity of X-ray diffraction, neutron powder diffraction, and electron diffraction and microscopy techniques to gain comprehensive structural insights at the global and local length scales. We found that the anomalous behavior is associated with a simultaneous onset of (i) a short-ranged rhombohedral ferroelectric correlations and (ii) a relatively long-ranged in-phase tilt distortion. The consequent spatial fluctuation in the local polar displacements, as imaged with the high-angle annular dark-field technique, provides the necessary structural insights regarding the unusual property anomalies.
在无铅压电材料中,基于铋钠钛矿(NBT)的铁电体系具有独特之处,其呈现出铁电与非铁电(同相八面体倾斜)结构不稳定性的复杂相互作用,影响着其铁电、介电和机电性能。像(1 - )铋钠钛矿 - 钾铋钛矿(NBT - KBT)这样的准同型相界(MPB)体系,这种复杂性得以充分展现。虽然该体系与MPB的传统观点一致,即在≈0.20时存在成分驱动的菱方 - 四方铁电 - 铁电不稳定性这一共识,但在四方铁电成分范围内,该体系在≈0.40时表现出相当大的结构无序和性能异常,这构成了一个谜题。在此,我们利用X射线衍射、中子粉末衍射以及电子衍射和显微镜技术的相互补充,在全局和局部长度尺度上获得全面的结构见解。我们发现,这种异常行为与以下两种情况的同时出现有关:(i)短程菱方铁电相关性,以及(ii)相对长程的同相倾斜畸变。用高角度环形暗场技术成像时,局部极性位移随之产生的空间波动,为有关异常性能异常提供了必要的结构见解。