Ivanov S A, Stash A I, Riekehr L, Chen Y-S, Ye Z-G
Department of Chemistry, M.V. Lomonosov Moscow State University, Leninskie Gory 1/3, Moscow, Russia, 119991.
Department of Engineering Sciences, Solid State Physics, Angstrom Laboratory, Uppsala University, Box 534, 751 21, Uppsala, Sweden.
Sci Rep. 2020 Sep 3;10(1):14567. doi: 10.1038/s41598-020-71438-4.
Despite intensive studies on the complex perovskite Pb(FeW)O (PFWO) relaxor, understanding the exact nature of its multifunctional properties has remained a challenge for decades. In this work we report a comprehensive structural study of the PFWO single crystals using a combination of synchrotron X-ray diffraction and high-resolution electron microscopy. The set of {h + ½, k + ½, l + ½} superlattice reflections was observed for the first time based on single-crystal synchrotron X-ray experiments (100-450 K) and transmission electron microscopy investigations, which indicates some kind of B-cation ordering in PFWO which had been thought to be totally disordered. It was found that (1) the crystal structure of PFWO should be described by a partly ordered cubic perovskite (i.e. Fm - 3m), (2) the weak ferromagnetic properties and excess magnetic moment of PFWO can be understood based on non-random distribution of Fe cations between the 4a and 4b sites, and (3) the Pb displacement disorder is present in this material and the cations are probably displaced along the <100> directions. The X-ray diffraction results of this investigation show that partial cation ordering indeed exists in PFWO, which makes it necessary to revisit the generally accepted interpretations of the results obtained up to date. In agreement with X-ray diffraction study the main results of TEM study include: (1) a long range order that can be described with the Fm - 3m symmetry is reliably detected, (2) the coherence length of that long range order is in the order of 1-2 nm and (3) no remarkable chemical inhomogeneity is found in the tested PFWO crystal, excluding the possibility of a compositional ordering arising from substitutional defects in the perovskite structure.
尽管对复杂钙钛矿Pb(FeW)O(PFWO)弛豫铁电体进行了深入研究,但几十年来,了解其多功能特性的确切本质一直是一项挑战。在这项工作中,我们报告了一项结合同步辐射X射线衍射和高分辨率电子显微镜对PFWO单晶进行的全面结构研究。基于单晶同步辐射X射线实验(100 - 450K)和透射电子显微镜研究,首次观察到了{h + ½, k + ½, l + ½}超晶格反射,这表明PFWO中存在某种B阳离子有序排列,而此前一直认为其是完全无序的。研究发现:(1)PFWO的晶体结构应由部分有序的立方钙钛矿(即Fm - 3m)来描述;(2)PFWO的弱铁磁特性和过量磁矩可以基于Fe阳离子在4a和4b位点之间的非随机分布来理解;(3)该材料中存在Pb位移无序,阳离子可能沿<100>方向位移。本次研究的X射线衍射结果表明,PFWO中确实存在部分阳离子有序排列,这使得有必要重新审视迄今为止普遍接受的结果解释。与X射线衍射研究一致,TEM研究的主要结果包括:(1)可靠地检测到了一种可以用Fm - 3m对称性描述的长程有序;(2)该长程有序的相干长度约为1 - 2nm;(3)在测试的PFWO晶体中未发现明显的化学不均匀性,排除了由钙钛矿结构中的替代缺陷引起成分有序的可能性。