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Design of noncentrosymmetric perovskites from centric and acentric basic building units

机译:从中心和非中心基本建筑单元设计非中心对称钙钛矿

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We present a detailed crystal-chemistry approach to lift inversion symmetry in inorganic crystals. By considering the ordering of centric and acentric basic building units in one and two dimensional systems, we review the structural "features'' necessary to break spatial parity. We then extend this model to three dimensional materials, focusing on the family of ABX(3) perovskites with corner-connected metalanion BX6 octahedra and A-site cations filling the interstices (forming AX(12) cuboctahedra). Although this extended BX6 network can tilt and rotate in space, these complex distortions preserve inversion symmetry; however, previous work has shown that certain rotational patterns of the octahedral units in combination with A-site cation ordering are able to lift inversion symmetry in perovskites. Herein, we extend this framework by comprehensively determining and describing the combinations of A- and B-site cation ordering schemes and BX6 octahedral rotation patterns that will produce noncentrosymmetric crystal structures independent of the chemical makeup. Although no combinations of simple B-site ordering lifts inversion, we find that a wide variety of polar, chiral, and second harmonic active structures can be realized with A-site and mixed A- and B-site cation ordering. We then show that the ability of such combinations to lift inversion symmetry depends on whether a given rotation pattern of the octahedral units distorts the A-site environment into centric or acentric polyhedra, as well as whether the cation ordering scheme aligns them in the proper orientation. Finally, we discuss the chemical factors stabilizing the various tilt patterns and ordering schemes, such as the tolerance factor and global instability index. The guidelines described here offer new insights into this vast family of materials, and detail a useful way to think about the design of noncentrosymmetric materials from basic building units.
机译:我们提出了详细的晶体化学方法来提升无机晶体中的反型对称性。通过考虑一维和二维系统中中心和非中心基本建筑单元的排序,我们研究了打破空间均等性所需的结构“特征”,然后将该模型扩展到三维材料,重点是ABX系列(3 )钙钛矿与角连接的金属阴离子BX6八面体和A-位阳离子填充间隙(形成AX(12)立方八面体)。尽管此扩展的BX6网络可以在空间中倾斜和旋转,但是这些复杂的变形保留了反演对称性;但是,以前的工作结果表明,八面体单元的某些旋转模式结合A-位阳离子排序可以提升钙钛矿中的反转对称性,在此,我们通过全面确定和描述A-位和B-位阳离子排序方案的组合来扩展该框架, BX6八面体旋转模式将产生与化学成分无关的非中心对称晶体结构。关于简单的B位置有序提升了反演,我们发现通过A位置以及混合的A和B位置阳离子有序可以实现各种各样的极性,手性和二次谐波活性结构。然后,我们表明,这些组合提升反对称性的能力取决于八面体单元的给定旋转模式是否将A位置环境扭曲为中心或非中心多面体,以及阳离子有序排列是否将它们按正确的方向对齐。最后,我们讨论了稳定各种倾斜模式和排序方案的化学因素,例如公差因子和全局不稳定性指数。此处介绍的准则为您提供了有关这一庞大材料系列的新见解,并详细介绍了一种从基本建筑单元考虑非中心对称材料设计的有用方法。

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