四方晶系
拉曼光谱
软模式
材料科学
相变
非谐性
相(物质)
凝聚态物理
密度泛函理论
亚稳态
衍射
声子
中子衍射
结晶学
铁学
分子振动
联轴节(管道)
倾斜(摄像机)
化学物理
八面体
对称(几何)
晶体结构
X射线晶体学
量子相变
分子物理学
结构稳定性
化学
作者
Akriti Singh,Shalini Badola,Haritima Mahajan,Ravi Shankar Singh,Surajit Saha
摘要
Double perovskites (A2BB′X6) represent a class of materials known for their compositional diversity and promising functionalities. A pivotal aspect underlying their functionality is the coupling between the structure and their physical properties. Here, we report a comprehensive investigation of the structural phase transition in Ba2CaWO6 (BCWO) using temperature-dependent Raman spectroscopy, x-ray diffraction (XRD), specific heat measurements, and density functional theory (DFT)-based calculations. Our Raman measurements reveal a soft mode (at ∼ 28 cm−1)-driven continuous phase transition from the low-temperature tetragonal (I4/m) to high-temperature cubic (Fm-3m) phase, accompanied by splitting and unusual shifts of modes in the tetragonal phase. Furthermore, our Raman data suggest that strong anharmonicity plays a role in phase transition, which is corroborated by specific heat data and further confirmed by XRD measurements exhibiting a change in octahedral tilt and unit cell parameters. DFT calculations reveal the presence of imaginary modes in the high-temperature cubic phase underscoring a possible structural phase transition. Our results shed light on the mechanism behind the phase transition and resolve previous ambiguities regarding the room temperature structural symmetry of BCWO.
科研通智能强力驱动
Strongly Powered by AbleSci AI