Gaudin E, Boucher F, Petricek V, Taulelle F, Evain M
Laboratoire de Chimie des Solides, IMN, UMR C6502 CNRS, Universite de Nantes, France.
Acta Crystallogr B. 2000 Jun;56 (Pt 3):402-8. doi: 10.1107/s0108768199016614.
The crystal structures of two of the three polymorphic forms of the Cu7PSe6 argyrodite compound are determined by means of single-crystal X-ray diffraction. In the high-temperature form, at 353 K, i.e. 33 K above the first phase transition, gamma-Cu7PSe6 crystallizes in cubic symmetry, space group F43m. The full-matrix least-squares refinement of the structure leads to the residual factors R = 0.0201 and wR = 0.0245 for 31 parameters and 300 observed independent reflections. In the intermediate form, at room temperature, beta-Cu7PSe6 crystallizes again in cubic symmetry, but with space group P2(1)3. Taking into account a merohedric twinning, the refinement of the beta-Cu7PSe6 structure leads to the residual factors R = 0.0297 and wR = 0.0317 for 70 parameters and 874 observed, independent reflections. The combination of a Gram-Charlier development of the Debye-Waller factor and a split model for copper cations reveals the possible diffusion paths of the d10 species in the gamma-Cu7PSe6 ionic conducting phase. The partial ordering of the Cu+ d10 element at the phase transition is found in concordance with the highest probability density sites of the high-temperature phase diffusion paths. A comparison between the two Cu7PSe6 and Ag7PSe6 analogues is carried out, stressing the different mobility of Cu+ and Ag+ and their relative stability in low-coordination chalcogenide environments.
通过单晶X射线衍射确定了Cu7PSe6硫银锗矿化合物三种多晶型中的两种的晶体结构。在高温形式下,即在353 K(比第一次相变高33 K)时,γ-Cu7PSe6以立方对称结晶,空间群为F43m。对该结构进行全矩阵最小二乘法精修,对于31个参数和300个观测到的独立反射,残余因子R = 0.0201,wR = 0.0245。在中间形式下,即在室温下,β-Cu7PSe6再次以立方对称结晶,但空间群为P2(1)3。考虑到准同形孪晶,对β-Cu7PSe6结构进行精修,对于70个参数和874个观测到的独立反射,残余因子R = 0.0297,wR = 0.0317。德拜-瓦勒因子的格拉姆-查利埃展开和铜阳离子的分裂模型相结合,揭示了γ-Cu7PSe6离子导电相中d10物种可能的扩散路径。发现Cu + d10元素在相变时部分有序,这与高温相扩散路径的最高概率密度位点一致。对两种Cu7PSe6和Ag7PSe6类似物进行了比较,强调了Cu +和Ag +的不同迁移率及其在低配位硫属化物环境中的相对稳定性。