Department of Materials Science and Engineering, City University of Hong Kong, Hong Kong 99999, China.
Neutrons Scattering Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, United States.
Inorg Chem. 2022 Dec 19;61(50):20277-20287. doi: 10.1021/acs.inorgchem.2c02489. Epub 2022 Dec 4.
The fundamental principles that govern antiferroelectric (AFE)-ferroelectric (FE) transitions are not well understood for many solid solutions of perovskite compounds. For example, crystal chemical considerations based on the average Goldschmidt tolerance factor or ionic polarizability do not precisely predict the boundary between the AFE and FE phases in dilute solid solutions of alkali niobates, such as KNaNbO ( ≤ 0.02). Here, based on detailed structural analysis from neutron total scattering experiments, we provide insights about how the relative local distortions around the A- and B-sites of the ABO perovskite structure affect the AFE/FE order of the average crystallographic phases in KNaNbO. We show that a higher (lower) ratio of B-site-centered distortions over A-site-centered distortions drives transition toward a long-range FE (AFE) phase, which is based on a competition between the long-range polarizing field of the Nb-O dipoles and the disordering effect of local distortions around the A-site. Our study provides a predictive tool for designing complex solid-solution perovskites with tunable (anti)ferroelectric polarization properties, which can be of interest for various energy-related applications such as high-density energy storage and solid-state cooling.
对于钙钛矿化合物的许多固溶体,控制反铁电 (AFE) - 铁电 (FE) 转变的基本原理还不是很清楚。例如,基于平均 Goldschmidt 容忍因子或离子极化率的晶体化学考虑因素并不能准确预测碱金属铌酸盐(如 KNaNbO(≤0.02))稀固溶体中 AFE 和 FE 相之间的边界。在这里,基于来自中子总散射实验的详细结构分析,我们提供了有关 A 和 B 位 ABO 钙钛矿结构周围相对局部畸变如何影响 KNaNbO 中平均结晶相的 AFE/FE 顺序的见解。我们表明,B 位中心畸变与 A 位中心畸变的比值越高(低),则向长程 FE(AFE)相转变的趋势越大,这是基于 Nb-O 偶极子的长程极化场与 A 位周围局部畸变的无序效应之间的竞争。我们的研究为设计具有可调(反)铁电极化性能的复杂固溶体钙钛矿提供了一种预测工具,这对于各种与能源相关的应用(例如高密度储能和固态冷却)可能是感兴趣的。