克里斯托夫舍费尔铁矿(Ce)晶体结构的完善以及通式为 {A4B(T2O7)2}{C2D2O8}m (m = 1, 2) 的舍夫长铁矿多晶体系列的模块化特征

S. M. Aksenov, E. S. Zarubina, R. Rastsvetaeva, N. V. Chukanov, M. I. Filina
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引用次数: 0

摘要

研究课题。此前,我们根据P21/m低对称空间群完善了Christofschäferite-(Ce)的晶体结构,从而确定了阳离子排列的局部特征。在这项工作中,我们根据之前收集到的衍射数据,按照 P21/a 高对称空间群重新定义了 christofschäferite-(Ce) 的晶体结构。此外,还对通式为 A4BC2D2(Si2O7)2O8 的霞石族成员进行了拓扑对称分析。材料和方法在德国莱茵兰-普法尔茨州(Rheinland-Pfalz)埃菲尔山脉 Mendig 附近的 Laacher See 火山附近,发现了一块岩浆岩样本,其中含有雪弗石(Ce)包裹体。采用单晶 X 射线分析法对其晶体结构进行了研究。研究结果。尽管对称性增加到了 P21/a 空间群(与之前的 P21/m 空间群数据相比),但八面体和四面体位点之间阳离子分布的主要模式得以保留。然而,由于阳离子位点的数量增加,这种分布变得更加无序。在 OD 理论的框架内,基于对天然和合成雪夫石族成员晶体结构的晶体化学分析,有可能将它们合并成一个具有相同 OD 群元的联合 OD 族。结论。根据 OD 理论,箭石族有两个结构 OD 亚群(箭石和透辉石)。预测了可能的 MDO 多型的晶体结构和对称性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Refinement of the crystal structure of christofschäferite-(Ce) and the modular aspect of the chevkinite polysomatic series with the general formula of {A4B(T2O7)2}{C2D2O8}m (m = 1, 2)
Research subject. The crystal structure of christofschäferite-(Ce) was previously refined in terms of the P21/m low-symmetrical space group, which allowed the local features of cationic arrangements to be determined. In this work, we set out to refine the crystal structure of christofschäferite-(Ce) in terms of the P21/a high-symmetrical space group based on the previously collected diffraction data. A topology-symmetrical analysis of the members of the chevkinite group with the general formula of A4BC2D2(Si2O7)2O8 was conducted. Materials and methods. A magmatic rock sample with christofschäferite-(Ce) inclusions was found in the vicinity of the Laacher See volcano, near Mendig, Eifel Mountains, Rhineland-Palatinate (Rheinland-Pfalz), Germany. The crystal structure was studied using single-crystal X-ray analysis. Results. Despite an increase in the symmetry to the P21/a space group (in comparison with the previous data with the P21/m space group), the main patterns of cation distribution between the octahedral and tetrahedral sites are preserved. However, due to the lover number of cationic sites, this distribution becomes more disordered. Based on a crystal chemical analysis of the crystal structures of natural and synthetic members of the chevkinite group in the framework of the OD theory, it is possible to combine them into a united OD family with the same OD groupoid. Conclusions. According to the OD theory, there are two structural OD-subgroups of the chevkinite group (chevkinite and perrierite). The crystal structure and symmetry of possible MDO-polytypes are predicted.
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