Física Materia Condensada, Facultad de Ciencia y Tecnología, Universidad del País Vasco, Apdo. 644, 48080, Bilbao, Spain.
Dalton Trans. 2011 Mar 7;40(9):1902-10. doi: 10.1039/c0dt00924e. Epub 2011 Jan 27.
The structure of BaThF(6) has been investigated as a function of temperature and pressure with single-crystal X-ray diffraction using synchrotron radiation. The compound crystallizes in the tysonite structure, space group P6(3)/mmc (a = 4.296(1) Å and c = 7.571(1) Å at ambient conditions). It is stable at least down to 150 K and up to 4 GPa. In the entire range of pressures and temperatures studied here, the compound is characterized by a high degree of disorder, both on the cationic and anionic positions. Despite the different valence states and sizes, both cations occupy the same crystallographic site in the ideal tysonite structure. The cationic disorder is described by two alternative approaches. The first model corresponds to a split-atom position model in which Ba(2+) is maintained on a special position with site symmetry 6m2, while Th(4+) is slightly displaced from the respective position. In the second model, both cations are maintained on the ideal position and anharmonic displacement parameters using a tensor of third order are introduced. Anharmonic displacement parameters have been refined from high-pressure single-crystal X-ray data measured in situ in a diamond anvil cell for the first time. The feasibility and general problems of anharmonic refinements of high-pressure X-ray data are further commented.
采用同步辐射单晶 X 射线衍射法研究了 BaThF(6) 的结构作为温度和压力的函数。该化合物在 tysonite 结构中结晶,空间群为 P6(3)/mmc(a = 4.296(1) Å 和 c = 7.571(1) Å,在环境条件下)。它至少在 150 K 以下和 4 GPa 以上稳定。在研究的整个压力和温度范围内,化合物的阳离子和阴离子位置都具有高度无序。尽管价态和尺寸不同,但两种阳离子都占据理想 tysonite 结构中的相同晶体学位置。阳离子无序用两种替代方法描述。第一种模型对应于分裂原子位置模型,其中 Ba(2+) 保持在具有点群 6m2 的特殊位置上,而 Th(4+) 则略微偏离各自的位置。在第二种模型中,两个阳离子都保持在理想位置上,并引入三阶张量的非谐位移参数。首次在金刚石砧细胞内原位测量高压单晶 X 射线数据,对非谐位移参数进行了细化。进一步评论了高压 X 射线数据非谐细化的可行性和一般问题。