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A new glance on R2MGe6(R = rare earth metal, M = another metal) compounds. An experimental and theoretical study of R2PdGe6germanides

机译:R2MGe6(R =稀土金属,M =另一种金属)化合物的新发现。 R2PdGe6germanides的实验和理论研究

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摘要

The R2PdGe6series (R = rare earth metal) was structurally characterized, and the results achieved were extended for a comprehensive study on R2MGe6(M = another metal) compounds, employing symmetry-based structural rationalization and energy calculations. Directly synthesized R2PdGe6exists for almost all R-components (R = Y, La-Nd, Sm and Gd-Lu) and even if with La is probably metastable. Several single crystal X-ray analyses (R = Y, Ce, Pr, Nd, Er and Lu) indicated oS72-Ce2(Ga0.1Ge0.9)7as the correct structure. The alternative In-flux method, once optimized, produced three good quality R2PdGe6single crystals: La2PdGe6and Pr2PdGe6turned out to be mS36-La2AlGe6-type non-merohedrally twinned crystals and Yb2PdGe6is of oS72-Ce2(Ga0.1Ge0.9)7-type. The vacancy ordering phenomenon was considered as a possible cause of the symmetry reduction relations connecting the most frequently reported 2:1:6 structural models (oS18, oS72 and mS36) with the oS20-SmNiGe3aristotype. The detected twin formation is consistent with the symmetry relations, which are discussed even considering the validity of the different structural models. DFT total energy calculations were performed for R2PdGe6(R = Y and La) in the three abovementioned structural models, and for La2MGe6(M = Pt, Cu, Ag and Au) in the oS18 and oS72 modifications. The results indicate that the oS18-Ce2CuGe6structure, prevalently proposed in the literature, is associated with the highest energy and thus it is not likely to be realized in these series. The oS72 and mS36 polytypes are energetically equivalent, and small changes in the synthetic conditions could easily stabilize any of them, in agreement with experimental results obtained by direct and flux syntheses.
机译:对R2PdGe6系列(R =稀土金属)进行了结构表征,并通过基于对称的结构合理化和能量计算,将获得的结果扩展到了对R2MGe6(M =其他金属)化合物的综合研究。直接合成的R2PdGe6存在于几乎所有R组分(R = Y,La-Nd,Sm和Gd-Lu),即使La可能是亚稳态的。几个单晶X射线分析(R = Y,Ce,Pr,Nd,Er和Lu)表明oS72-Ce2(Ga0.1Ge0.9)7是正确的结构。经过优化的另一种In-flux方法可以产生三种高质量的R2PdGe6单晶:La2PdGe6和Pr2PdGe6成为mS36-La2AlGe6型非面晶孪晶,Yb2PdGe6是oS72-Ce2(Ga0.1Ge0.9)7型。空位有序现象被认为是对称减少关系的可能原因,该关系将最频繁报告的2:1:6结构模型(oS18,oS72和mS36)与oS20-SmNiGe3aristotype连接起来。检测到的孪晶形成与对称关系一致,甚至考虑到不同结构模型的有效性也进行了讨论。在上述三个结构模型中对R2PdGe6(R = Y和La)进行了DFT总能量计算,而在oS18和oS72修饰中对La2MGe6(M = Pt,Cu,Ag和Au)进行了DFT总能量计算。结果表明,文献中普遍提出的oS18-Ce2CuGe6结构与最高能量相关,因此在这些系列中不太可能实现。 oS72和mS36多型在能量上是等效的,并且合成条件的微小变化可以轻松稳定任何一个,这与直接和通量合成获得的实验结果一致。

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