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高压下掺锗钛酸钙(CTG)的结构演变:通过同步辐射X射线衍射和密度泛函理论计算寻找首个2:4锁定倾斜钙钛矿

Structure Evolution of Ge-Doped CaTiO (CTG) at High Pressure: Search for the First 2:4 Locked-Tilt Perovskite by Synchrotron X-ray Diffraction and DFT Calculations.

作者信息

Ardit Matteo, Conte Sonia, Belmonte Donato, Menescardi Francesca, Pollastri Simone, Cruciani Giuseppe, Dondi Michele

机构信息

Department of Physics and Earth Sciences, University of Ferrara, via Saragat 1, I-44122 Ferrara, Italy.

CNR-ISSMC, Institute of Science, Technology and Sustainability for the Development of Ceramic Materials, via Granarolo 64, I-48018 Faenza, Italy.

出版信息

Inorg Chem. 2023 Oct 16;62(41):16943-16953. doi: 10.1021/acs.inorgchem.3c02645. Epub 2023 Oct 5.

Abstract

This research investigates the high-pressure behavior of the Ca(TiGe)O perovskite, a candidate of the locked-tilt perovskite family (orthorhombic compounds characterized by the absence of changes in the octahedral tilt and volume reduction under pressure controlled solely by isotropic compression). The study combines experimental high-pressure synchrotron diffraction data with density functional theory (DFT) calculations, complemented by the X-ray absorption near-edge structure (XANES) and extended X-ray absorption fine structure (EXAFS), to understand the structural evolution of the perovskite under pressure. The results show that CTG undergoes nearly isotropic compression with the same compressibility along all three unit-cell axes (i.e., = = , giving a normalized cell distortion factor with pressure () = 1). However, a modest increase in octahedral tilting with pressure is revealed by DFT calculations, qualifying CTG as a new type of GdFeO-type perovskite that exhibits both isotropic compression and nonlocked tilting. This finding complements two existing types: perovskites with anisotropic compression and tilting changes and those with isotropic compression and locked tilting. The multimethod approach provides valuable insights into the structural evolution of locked-tilt perovskites under high pressure and establishes a protocol for the efficient study of complex high-pressure systems. The results have implications for the design of new functional materials with desirable properties.

摘要

本研究调查了钙钛矿Ca(TiGe)O的高压行为,它是锁定倾斜钙钛矿家族的一个候选物(正交化合物,其特征是在仅由各向同性压缩控制的压力下,八面体倾斜和体积减小没有变化)。该研究将实验性高压同步辐射衍射数据与密度泛函理论(DFT)计算相结合,并辅以X射线吸收近边结构(XANES)和扩展X射线吸收精细结构(EXAFS),以了解钙钛矿在压力下的结构演变。结果表明,CTG经历了几乎各向同性的压缩,沿所有三个晶胞轴具有相同的压缩率(即 = = ,给出了压力下的归一化晶胞畸变因子 () = 1)。然而,DFT计算揭示了八面体倾斜随压力有适度增加,这使CTG成为一种新型的GdFeO型钙钛矿,它既表现出各向同性压缩又表现出非锁定倾斜。这一发现补充了现有的两种类型:具有各向异性压缩和倾斜变化的钙钛矿以及具有各向同性压缩和锁定倾斜的钙钛矿。这种多方法途径为锁定倾斜钙钛矿在高压下的结构演变提供了有价值的见解,并建立了一种有效研究复杂高压系统的方案。这些结果对具有理想性能的新型功能材料的设计具有启示意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/289a/10583197/5df0f70ca4b1/ic3c02645_0001.jpg

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