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M3(Au,Ge)19 和 M(3.25)(Au,Ge)18(M = Ca,Yb):立方 YCd6 型衍生物中组态无序驱动的独特相分离。

M3(Au,Ge)19 and M(3.25)(Au,Ge)18 (M = Ca, Yb): distinctive phase separations driven by configurational disorder in cubic YCd6-type derivatives.

机构信息

Department of Chemistry, Iowa State University, Ames, Iowa 50010, USA.

出版信息

Inorg Chem. 2010 May 17;49(10):4570-7. doi: 10.1021/ic100118q.

Abstract

Exploratory syntheses in the M-Au-Ge (M = Ca, Yb) systems have led to the discovery of two cleanly separated non-stoichiometric phases M(3)Au(approximately 14.4)Ge(approximately 4.6) (I) and M(3.25)Au(approximately 12.7)Ge(approximately 5.3) (II). Single crystal X-ray studies reveal that both (space group Im3) feature body-centered-cubic packing of five-shell multiply endohedral clusters that resemble those in the parent YCd(6) (= Y(3)Cd(18)) and are akin to approximate phases in other quasicrystal systems. However, differences resulting from various disorders in these are distinctive. The innermost cluster in the M(3)Au(approximately 14.4)Ge(approximately 4.6) phase (I) remains a disordered tetrahedron, as in the YCd(6) parent. In contrast, its counterpart in the electron-richer M(3.25)Au(approximately 12.7)Ge(approximately 5.3) phase (II) is a "rattling" M atom. The structural differentiations between I and II exhibit strong correlations between lattice parameters, cluster sizes, particular site occupancies, and valence electron counts.

摘要

在 M-Au-Ge(M = Ca,Yb)体系中的探索性综合导致发现了两个干净分离的非化学计量的相 M(3)Au(约 14.4)Ge(约 4.6) (I) 和 M(3.25)Au(约 12.7)Ge(约 5.3) (II)。单晶 X 射线研究表明,两者(空间群 Im3)都具有五壳层多内包笼的体心立方堆积,类似于母体 YCd(6)(= Y(3)Cd(18)),与其他准晶体系中的近似相类似。然而,由于这些体系中的各种无序而产生的差异是独特的。在 M(3)Au(约 14.4)Ge(约 4.6)相 (I) 中,最内层的簇仍然是无序的四面体,就像母体 YCd(6)一样。相比之下,在电子含量更高的 M(3.25)Au(约 12.7)Ge(约 5.3)相 (II) 中,其对应物是一个“摇晃”的 M 原子。I 和 II 之间的结构差异在晶格参数、簇大小、特定位置占有率和价电子计数之间表现出强烈的相关性。

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