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不同厚度钛酸锶薄膜的晶格动力学建模:拉曼散射研究

Modeling of the Lattice Dynamics in Strontium Titanate Films of Various Thicknesses: Raman Scattering Studies.

作者信息

Krasnenko Veera, Platonenko Alexander, Liivand Aleksandr, Rusevich Leonid L, Mastrikov Yuri A, Zvejnieks Guntars, Sokolov Maksim, Kotomin Eugene A

机构信息

Institute of Physics, University of Tartu, 50411 Tartu, Estonia.

Institute of Solid State Physics, University of Latvia, LV-1586 Riga, Latvia.

出版信息

Materials (Basel). 2023 Sep 14;16(18):6207. doi: 10.3390/ma16186207.

Abstract

While the bulk strontium titanate (STO) crystal characteristics are relatively well known, ultrathin perovskites' nanostructure, chemical composition, and crystallinity are quite complex and challenging to understand in detail. In our study, the DFT methods were used for modelling the Raman spectra of the STO bulk (space group I4/mcm) and 5-21-layer thin films (layer group p4/mbm) in tetragonal phase with different thicknesses ranging from ~0.8 to 3.9 nm. Our calculations revealed features in the Raman spectra of the films that were absent in the bulk spectra. Out of the seven Raman-active modes associated with bulk STO, the frequencies of five modes (2E A, B, and B) decreased as the film thickness increased, while the low-frequency B and higher-frequency E modes frequencies increased. The modes in the films exhibited vibrations with different amplitudes in the central or surface parts of the films compared to the bulk, resulting in frequency shifts. Some peaks related to bulk vibrations were too weak (compared to the new modes related to films) to distinguish in the Raman spectra. However, as the film thickness increased, the Raman modes approached the frequencies of the bulk, and their intensities became higher, making them more noticeable in the Raman spectrum. Our results could help to explain inconsistencies in the experimental data for thin STO films, providing insights into the behavior of Raman modes and their relationship with film thickness.

摘要

虽然块状钛酸锶(STO)晶体的特性相对为人熟知,但超薄钙钛矿的纳米结构、化学成分和结晶度相当复杂,难以详细理解。在我们的研究中,采用密度泛函理论(DFT)方法对四方相的块状STO(空间群I4/mcm)和5 - 21层薄膜(层群p4/mbm)的拉曼光谱进行建模,薄膜厚度范围约为0.8至3.9纳米。我们的计算揭示了薄膜拉曼光谱中存在而块状光谱中不存在的特征。在与块状STO相关的七种拉曼活性模式中,五种模式(2E A、B和B)的频率随薄膜厚度增加而降低,而低频B模式和高频E模式的频率增加。与块状相比,薄膜中的模式在薄膜的中心或表面部分表现出不同幅度的振动,从而导致频率偏移。一些与块状振动相关的峰(与薄膜相关的新模式相比)太弱,在拉曼光谱中难以区分。然而,随着薄膜厚度增加,拉曼模式接近块状的频率,且其强度增加,使其在拉曼光谱中更明显。我们的结果有助于解释STO薄膜实验数据中的不一致性,深入了解拉曼模式的行为及其与薄膜厚度的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/967d/10532996/980961bdf56d/materials-16-06207-g004.jpg

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