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SrTiO₃ 中的光致局域对称性破缺及铁电体的潜在形成途径

Photoinduced Local Symmetry Breakage in SrTiO and Potential Pathways to Ferroelectricity.

作者信息

Remesal Elena R, Posligua Víctor, Plata Jose J, Márquez Antonio M

机构信息

Departamento de Química Física, Facultad de Química, Universidad de Sevilla, 41012 Seville, Spain.

出版信息

J Phys Chem C Nanomater Interfaces. 2025 Jan 23;129(5):2663-2671. doi: 10.1021/acs.jpcc.4c06242. eCollection 2025 Feb 6.

Abstract

During the past few years Strontium Titanate, STO, has been the subject of extensive studies exploring the phase transitions it undergoes from paraelectric to ferroelectric or antiferrodistortive phases, induced by electromagnetic radiation such as lasers. This ability to exhibit photoinduced ferroelectricity has profound implications for its potential applications in photovoltaic and optoelectronic devices. Additionally, SrTiO exhibits a rich dielectric behavior under UV irradiation in the presence of an electric field. In this work, we explore the nature of the photoinduced enhancement of the STO dielectric constant under UV irradiation. Analyzing the STO potential energy surface (PES), the first excited states exhibit a local breaking of symmetry due to the displacement of the Ti atom off the center of the unit cell. Furthermore, two key variables linked to the ferroelectric phase transition in STO, namely, pressure and oxygen vacancies, are investigated. Pressure can modify the ground state and excited state PES, tailoring the depth of the excited state well or reducing the energy gap between the ground and excited states. The distribution of oxygen vacancies in the STO bulk was also explored, revealing preferential configurations and the presence of aligned Ti-O-Ti or Ti-O complexes. These configurations can lead to a small polarization of the material, which could serve as a driving force to align the off-center photoexcited Ti polarons.

摘要

在过去几年中,钛酸锶(STO)一直是广泛研究的对象,这些研究探索了它在诸如激光等电磁辐射诱导下从顺电相转变为铁电相或反铁电畸变相的过程。这种展现光致铁电性的能力对其在光伏和光电器件中的潜在应用具有深远影响。此外,在电场存在的情况下,SrTiO在紫外线照射下表现出丰富的介电行为。在这项工作中,我们探索了紫外线照射下STO介电常数光致增强的本质。通过分析STO势能面(PES),由于Ti原子偏离晶胞中心的位移,第一激发态呈现出局部对称性破缺。此外,还研究了与STO中铁电相变相关的两个关键变量,即压力和氧空位。压力可以改变基态和激发态的PES,调整激发态势阱的深度或减小基态与激发态之间的能隙。还探索了STO体相中氧空位的分布,揭示了优先构型以及对齐的Ti - O - Ti或Ti - O络合物的存在。这些构型可导致材料产生小的极化,这可能作为驱动偏心光激发Ti极化子排列的驱动力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0685/12139574/e5d3a50de748/jp4c06242_0001.jpg

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