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具有动力学八面体倾斜的钙钛矿结构类型分类。

Classification of perovskite structural types with dynamical octahedral tilting.

机构信息

University of Bern, Bern, Switzerland.

出版信息

IUCrJ. 2023 May 1;10(Pt 3):309-320. doi: 10.1107/S2052252523002208.

Abstract

Perovskites ABX with delocalized positions of the X atoms represent a distinct class of dynamically distorted structures with peculiar structural relations and physical properties. The delocalization originates from atoms crossing shallow barriers of the potential energy surface. Quantum mechanically, they can be treated similar to light atoms in diffusive states. Many of these perovskite structures are widely used functional materials thanks to their particular physical properties, such as superconductivity, ferroelectricity and photo-activity. A number of these properties are related to static or dynamic motion of octahedral units. Yet, a full understanding of the relationships between perovskite crystal structure, chemical bonding and physical properties is currently missing. Several studies indicate the existence of dynamic disorder generated by anharmonic motion of octahedral units, e.g. in halide perovskite structures. To simplify structural analysis of such systems we derive a set of space groups for simple perovskites ABX with dynamical octahedral tilting. The derived space groups extend the well established space group tables for static tiltings by Glazer [Acta Cryst. B (1972). 28, 3384-3392], Aleksandrov [Ferroelectrics (1976). 24, 801-805] and Howard & Stokes [Acta Cryst. B (1998). 54, 782-789]. Ubiquity of dynamical tilting is demonstrated by an analysis of the structural data for perovskites reported in recent scientific publications and the signature of dynamic tilting in the corresponding structures is discussed, which can be summarized as follows: (a) volume increase upon a lowering of temperature, (b) apparent distortion of octahedra (where Jahn-Teller distortions can be ruled out), (c) mismatch between observed instantaneous symmetry and average symmetry, (d) deviation of the experimental space group from the theoretically predicted structures for static tilting, (e) inconsistency of lattice parameters with those suggested by the theory of static tilts, and (f) large displacement parameters for atoms at the X and B sites. Finally, the possible influence of dynamic disorder on the physical properties of halide perovskites is discussed.

摘要

具有 X 原子非局域位置的钙钛矿 ABX 代表了一类独特的动态畸变结构,具有特殊的结构关系和物理性质。非局域化起源于原子穿越势能表面的浅势垒。从量子力学的角度来看,它们可以被视为处于扩散态的轻原子。由于其特殊的物理性质,如超导性、铁电性和光活性,许多这些钙钛矿结构被广泛用作功能材料。这些性质中的许多与八面体单元的静态或动态运动有关。然而,目前人们对钙钛矿晶体结构、化学成键和物理性质之间的关系还没有全面的了解。一些研究表明,存在由八面体单元的非谐运动产生的动态无序,例如在卤化物钙钛矿结构中。为了简化此类系统的结构分析,我们推导出了一组具有动力学八面体倾斜的简单钙钛矿 ABX 的空间群。所推导的空间群通过 Glazer [Acta Cryst. B (1972). 28, 3384-3392]、Aleksandrov [Ferroelectrics (1976). 24, 801-805] 和 Howard & Stokes [Acta Cryst. B (1998). 54, 782-789] 为静态倾斜扩展了现有的空间群表。通过分析最近科学出版物中报道的钙钛矿结构数据,证明了动力学倾斜的普遍性,并讨论了相应结构中动态倾斜的特征,可以概括为以下几点:(a) 随温度降低体积增大,(b) 八面体明显变形(可以排除 Jahn-Teller 变形),(c) 观察到的瞬时对称与平均对称不匹配,(d) 实验空间群偏离静态倾斜理论预测结构,(e) 晶格参数与静态倾斜理论建议的晶格参数不一致,(f) X 和 B 位原子的位移参数较大。最后,讨论了动态无序对卤化物钙钛矿物理性质的可能影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eda1/10161773/04918b07fa6a/m-10-00309-fig1.jpg

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