论文标题

拉曼光谱法确定的bazro $ _3 $晶体的压力依赖性结构

Pressure-dependent structure of BaZrO$_3$ crystals as determined by Raman Spectroscopy

论文作者

Gim, Dong-Hyeon, Sur, Yeahan, Lee, Yoon Han, Lee, Jeong Hyuk, Moon, Soonjae, Oh, Yoon Seok, Kim, Kee Hoon

论文摘要

最近对室温下的介电性钙钛矿bazro $ _3 $的结构,尚未在室温下是立方体,而没有任何结构性相变和温度变化的结构过渡,它具有不同的基态结构,其对称性较低,涉及Octahedra旋转。依赖压力的拉曼散射测量值可以识别出能量吸收的多晶型物的层次结构,从而有助于理解其在大气压力下的基态结构。在这里,研究了由光浮动区域方法生长的高品质Bazro $ _3 $的单晶的拉曼散射光谱,该晶体的压力范围从1 atm到42 GPA。首先,基于在大气中测得的红外和拉曼光谱的分析,发现所有观察到的振动模式都可以根据立方$ pm \ bar \ bar {3} m $结构分配。此外,通过施加压力,发现了两个结构相变处为8.4和19.2 GPA,一个从立方到菱形$ r \ r \ bar {3} c $相位,另一个是从菱形到四方$ i4/mcm $相位的。基于两个压力诱导的结构相变,在室温和环境压力下Bazro $ _3 $的真实基态结构佐证为立方体,而菱形相位是最接近的第二个。

The structure of dielectric perovskite BaZrO$_3$, long known to be cubic at room temperature without any structural phase transition with variation of temperature, has been recently disputed to have different ground state structures with lower symmetries involving octahedra rotation. The pressure-dependent Raman scattering measurements can identify the hierarchy of energetically-adjacent polymorphs, helping in turn understand its ground state structure at atmospheric pressure. Here, Raman scattering spectra of high-quality BaZrO$_3$ single crystals grown by the optical floating zone method are investigated in a pressure range from 1 atm to 42 GPa. First, based on the analyses of the infrared and Raman spectra measured at the atmosphere, it is found that all observed vibrational modes can be assigned according to the cubic $Pm\bar{3}m$ structure. In addition, by applying pressure, two structural phase transitions are found at 8.4 and 19.2 GPa, one from the cubic to the rhombohedral $R\bar{3}c$ phase and the other from the rhombohedral to the tetragonal $I4/mcm$ phase. Based on the two pressure-induced structural phase transitions, the true ground state structure of BaZrO$_3$ at room temperature and ambient pressure is corroborated to be cubic while the rhombohedral phase is the closest second.

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