European Synchrotron Radiation Facility, 6 rue Jules Horowitz, B. P. 220, F-38043, Grenoble cedex, France.
Dalton Trans. 2010 May 14;39(18):4302-11. doi: 10.1039/b925817e. Epub 2010 Mar 25.
We have performed in situ X-ray diffraction, Raman scattering, pseudosymmetry analysis and quantum mechanical atomistic simulations of the structure and behaviour of LaF(3) at high pressure, up to and exceeding the phase transition pressure reported for the I4/mmm structure and Cmma symmetry proposed previously. We observe that the structure of LaF(3)-II is best described as being of anti-Cu(3)Ti-type (oP8, Pmmn, SG59), which is closely related to the I4/mmm structure obtained by simulation, through notional distortion, and is evidently similar to the Cmma symmetry by comparison of published diffraction data. We demonstrate that the models are also related to each other, and can be derived through pseudosymmetry searches. LaF(3)-II does not undergo further phase transitions before at least 60 GPa, and none are expected before 1 Mbar. The similarity between the anti-Cu(3)Ti-type and the I4/mmm structure models and our in situ diffraction data, supports the transition mechanisms derived from atomistic model simulations for a generic REF(3) transition to the post-tysonite phase (where RE = La, Ce, Pr, Nd).
我们对高压下 LaF(3)的结构和行为进行了原位 X 射线衍射、拉曼散射、赝对称分析和量子力学原子模拟,压力高达并超过先前报道的 I4/mmm 结构和 Cmma 对称性的相转变压力。我们观察到,LaF(3)-II 的结构最好被描述为反-Cu(3)Ti 型(oP8、Pmmn、SG59),通过拟议的变形,它与通过模拟获得的 I4/mmm 结构密切相关,并且通过比较发表的衍射数据,显然与 Cmma 对称性相似。我们证明,这些模型彼此相关,并且可以通过赝对称搜索来推导。LaF(3)-II 在至少 60 GPa 之前不会发生进一步的相变,在 1 Mbar 之前也不会发生。反-Cu(3)Ti 型和 I4/mmm 结构模型与我们的原位衍射数据之间的相似性,支持了源自原子模型模拟的通用 REF(3)向 post-tysonite 相转变的过渡机制(其中 RE = La、Ce、Pr、Nd)。