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理解RbHSO中铁电相变的机制:高压拉曼研究

Understanding the Mechanism of Ferroelectric Phase Transition in RbHSO: A High-Pressure Raman Investigation.

作者信息

Swain Diptikanta, Bhadram Venkata Srinu, Pradhan Gopal K, Narayana Chandrabhas

机构信息

Chemistry and Physics of Materials Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur P.O., Bangalore 560064, India.

Institut de Minéralogie, de Physique des Matériaux et de Cosmochimie, Sorbonne Université, CNRS, Muséum National d'Histoire Naturelle, 4 place Jussieu, 75005 Paris, France.

出版信息

Inorg Chem. 2020 Jun 15;59(12):7960-7965. doi: 10.1021/acs.inorgchem.9b03340. Epub 2020 May 29.

Abstract

Previous high-pressure dielectric and diffraction studies on rubidium hydrogen sulfate (RbHSO) observed ferroelectric phase transition below 1 GPa pressure. We have performed high-pressure Raman spectroscopy studies on RbHSO up to a maximum pressure of 5.15 GPa and at ambient temperature to understand the microscopic origin and mechanism of ferroelectric transition. On the basis of the pressure dependence of Raman mode frequencies and their full-width at half-maxima, we observed a transition around a pressure of 0.3 GPa, similar to the ferroelectric transition discovered in dielectric measurements, followed by another transition around 2.4 GPa. These phase transitions are evident from the appearance/disappearance of Raman-active modes and the change in the slope of frequencies with pressures. From the pressure dependence of the S-O and S-OH frequencies, we deduce that HSO ion ordering results in ferroelectric phase transition around 0.3 GPa. Further, the transition around 2.4 GPa pressure is associated with significant changes in the stretching and bending vibrational frequencies and indicates a structural phase transition with possible lowering of the crystal symmetry. Interestingly, no significant changes are observed in the Raman spectrum around 1 GPa, at which a phase transition was noticed in earlier X-ray and dielectric studies.

摘要

先前对硫酸氢铷(RbHSO)进行的高压介电和衍射研究观察到在1 GPa压力以下存在铁电相变。我们在室温下对RbHSO进行了高达5.15 GPa的高压拉曼光谱研究,以了解铁电转变的微观起源和机制。基于拉曼模式频率及其半高宽的压力依赖性,我们观察到在约0.3 GPa的压力附近发生了转变,这与在介电测量中发现的铁电转变类似,随后在约2.4 GPa处又发生了一次转变。这些相变从拉曼活性模式的出现/消失以及频率随压力的斜率变化中明显可见。从S - O和S - OH频率的压力依赖性,我们推断HSO离子有序排列导致在约0.3 GPa处发生铁电相变。此外,约2.4 GPa压力下的转变与伸缩和弯曲振动频率的显著变化相关,表明这是一次结构相变,可能伴随着晶体对称性的降低。有趣的是,在约1 GPa附近的拉曼光谱中未观察到明显变化,而在早期的X射线和介电研究中曾注意到在该压力下有相变。

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