Temperature-dependent Raman spectral evidence of local structural changes in BiFeO3 thin films: Influence of substrate and oxygen vacancies

IF 2.7 3区 物理与天体物理 Q2 PHYSICS, APPLIED Journal of Applied Physics Pub Date : 2024-01-08 DOI:10.1063/5.0167782
Subhajit Nandy, Pavana S. V. Mocherla, C. Sudakar
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Abstract

Temperature-dependent Raman spectral studies of BiFeO3 (BFO) films coated on three different substrates, viz., conducting Si (BFO-Si), sapphire (BFO-SAP), and fluorine-doped tin oxide (BFO-FTO), are reported between 123 and 773 K. The activity of Bi–O and Fe–O modes in these samples as a function of temperature shows different spectral features despite having synthesized from the same precursor. To understand the source of these variations, the spectra obtained on the above films were compared with those of bulk BiFeO3 (BFO-bulk) prepared via spark-plasma sintering. As the temperature increases, modes corresponding to the Bi–O activity at low frequency (120–180 cm−1) exhibit a redshift in their positions in all the samples. Between 350 and 550 K, BFO-SAP and BFO-Si samples show discernible anomalies in the positions of modes corresponding to the Fe–O activity (200–500 cm−1), which is not observed in the BFO-bulk and BFO-FTO samples. These anomalies are more pronounced for the modes between 350 and 500 cm−1, suggesting alterations in the Néel transition temperature (∼643 K for BiFeO3). Concurrently, another composite film of BiFeO3–CoFe2O4 coated on the Si substrate is explored. Raman studies on the composite film are used to compare and verify the influence of the substrate and defects on the magnetic ordering as a function of temperature. Our study highlights the significance and relevance of using Raman spectroscopy as a tool to discern various factors leading to local structural and magnetic variation in a given compound.
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BiFeO3 薄膜局部结构变化的温度依赖性拉曼光谱证据:基底和氧空位的影响
报告了涂覆在导电硅 (BFO-Si)、蓝宝石 (BFO-SAP) 和掺氟氧化锡 (BFO-FTO) 这三种不同基底上的 BiFeO3 (BFO) 薄膜在 123 至 773 K 之间随温度变化的拉曼光谱研究。为了了解这些变化的根源,我们将上述薄膜获得的光谱与通过火花等离子烧结法制备的块状 BiFeO3(BFO-bulk)的光谱进行了比较。随着温度的升高,与低频(120-180 cm-1)Bi-O 活性相对应的模式在所有样品中的位置都发生了重移。在 350 至 550 K 之间,BFO-SAP 和 BFO-Si 样品中与 Fe-O 活性(200-500 cm-1)相对应的模式位置出现了明显的异常,而在 BFO-bulk 和 BFO-FTO 样品中则没有观察到这种异常。这些异常在 350 至 500 cm-1 之间的模式中更为明显,表明内耳转变温度(BiFeO3 为 ∼643 K)发生了变化。与此同时,我们还探索了另一种涂覆在硅基底上的 BiFeO3-CoFe2O4 复合薄膜。通过对复合薄膜进行拉曼研究,比较并验证了基底和缺陷对磁有序性随温度变化的影响。我们的研究强调了将拉曼光谱作为一种工具来辨别导致特定化合物局部结构和磁性变化的各种因素的重要性和相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Applied Physics
Journal of Applied Physics 物理-物理:应用
CiteScore
5.40
自引率
9.40%
发文量
1534
审稿时长
2.3 months
期刊介绍: The Journal of Applied Physics (JAP) is an influential international journal publishing significant new experimental and theoretical results of applied physics research. Topics covered in JAP are diverse and reflect the most current applied physics research, including: Dielectrics, ferroelectrics, and multiferroics- Electrical discharges, plasmas, and plasma-surface interactions- Emerging, interdisciplinary, and other fields of applied physics- Magnetism, spintronics, and superconductivity- Organic-Inorganic systems, including organic electronics- Photonics, plasmonics, photovoltaics, lasers, optical materials, and phenomena- Physics of devices and sensors- Physics of materials, including electrical, thermal, mechanical and other properties- Physics of matter under extreme conditions- Physics of nanoscale and low-dimensional systems, including atomic and quantum phenomena- Physics of semiconductors- Soft matter, fluids, and biophysics- Thin films, interfaces, and surfaces
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