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Electron density distribution and crystal structure of 21 R-AION, AI_7O_3N_5

机译:21 R-AION,AI_7O_3N_5的电子密度分布和晶体结构

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摘要

The crystal structure of Al_7O_3N_5 was characterized by laboratory X-ray powder diffraction (CuKα_1). The title compound is trigonal with a space group R3m (centrosymmetric). The hexagonal unit-cell dimensions (Z=3) are a = 0.305 06(1) nm, c=5.7216(1) nm, and V=0.461 11(2) nm~3. The initial structural model was derived by the charge-flipping method and refined by the Rietveld method. The final structural model showed the positional disordering of two of the four Al sites. The maximum-entropy method-based pattern fitting method was used to confirm the validity of the split-atom model, in which conventional structure bias caused by assuming intensity partitioning was minimized. The disordered crystal structure was successfully described by overlapping five types of domains with ordered atom arrangements. The distribution of atomic positions in one of the five types of domains can be achieved in the space group R3m. The atom arrangements in the four other domains are non-centrosymmetric with the space group R3m. Two of the four types of domains are related by a pseudo-symmetrical inversion, and the two remaining domains also have each other in the inversion pseudo-symmetry.
机译:Al_7O_3N_5的晶体结构通过实验室X射线粉末衍射(CuKα_1)表征。标题化合物是具有空间组R3m(中心对称)的三角形。六边形晶胞尺寸(Z = 3)为a = 0.305 06(1)nm,c = 5.7216(1)nm,V = 0.461 11(2)nm〜3。初始结构模型是通过电荷翻转法导出的,并通过Rietveld方法进行了完善。最终的结构模型显示了四个Al位点中的两个的位置无序。使用基于最大熵方法的图案拟合方法来确认分裂原子模型的有效性,在该模型中,假设强度分配引起的常规结构偏差最小。通过将五种类型的畴以有序的原子排列重叠,成功地描述了无序晶体结构。可以在空间群R3m中实现五种类型域之一中原子位置的分布。其他四个域中的原子排列与空间群R3m非中心对称。四种类型的域中的两种通过伪对称反演相关,并且其余两个域在反演伪对称中也彼此相关。

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