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(Eu(1-x)Ca(x))(4)In(3)Ge(4)和(Eu(1-x)Ca(x))(3)In(2)Ge(3)中的混合阳离子和结构复杂性——同系列 A(2[n+m])In(2n+m)Ge(2[n+m])的前两个成员(n, m = 1, 2,...infinity; A = Ca, Sr, Ba, Eu, 或 Yb)。

Mixed cations and structural complexity in (Eu(1-x)Ca(x))(4)In(3)Ge(4) and (Eu(1-x)Ca(x))(3)In(2)Ge(3)--the first two members of the homologous series A(2[n+m])In(2n+m)Ge(2[n+m]) (n, m = 1, 2, ...infinity; A = Ca, Sr, Ba, Eu, or Yb).

机构信息

Department of Chemistry and Biochemistry, University of Delaware, Newark, Delaware 19716, USA.

出版信息

Inorg Chem. 2010 Feb 15;49(4):1773-83. doi: 10.1021/ic902144h.

Abstract

Reported are the synthesis and the structural characterization of two members of a new homologous series of polar intermetallic compounds, which exist only with mixed alkaline-earth and rare-earth metal cations. Crystals of (Eu(1-x)Ca(x))(4)In(3)Ge(4) (0.35(1) <or= x <or= 0.70(1)) and (Eu(1-x)Ca(x))(3)In(2)Ge(3) (0.78(1) <or= x <or= 0.90(1)) have been grown using a molten In metal flux and structurally characterized by single-crystal X-ray diffraction. (Eu(1-x)Ca(x))(4)In(3)Ge(4) adopts the monoclinic Mg(5)Si(6)-type structure (space group C2/m, Z = 2, Pearson symbol mS22) with lattice parameters a = 16.874(1)-17.024(2) A, b = 4.496(3)-4.556(1) A, c = 7.473(4)-7.540(1) A, and beta = 107.306(10)-105.631(3) degrees . (Eu(1-x)Ca(x))(3)In(2)Ge(3) crystallizes with a novel orthorhombic structure (space group Pnma, Z = 4, Pearson symbol oP32) with lattice parameters in the ranges a = 7.382(2)-7.4010(9) A, b = 4.452(1)-4.4640(6) A, and c = 23.684(6)-23.734(3) A, depending on the Eu/Ca ratio. The polyanionic substructures in both cases are related and are based on InGe(4) edge-shared tetrahedra, Ge(2) dimers, and bridging In atoms in a nearly square-planar environment. The (Eu(1-x)Ca(x))(4)In(3)Ge(4) structure can be viewed as a 1:1 intergrowth of Mo(2)FeB(2)-like and TiNiSi-like fragments, whereas (Eu(1-x)Ca(x))(3)In(2)Ge(3) can be rationalized as a 2:1 intergrowth of the same structural motifs. Both phases exhibit fairly wide homogeneity ranges and exist only with mixed cations. The experimental results have been complemented by linear muffin-tin orbital tight-binding band structure calculations, as well as an analysis of the observed cationic site preferences.

摘要

报道了一类新的同系物极性金属间化合物的两个成员的合成和结构特征,它们仅存在混合的碱土金属和稀土金属阳离子。(Eu(1-x)Ca(x))(4)In(3)Ge(4)(0.35(1)≤x≤0.70(1))和(Eu(1-x)Ca(x))(3)In(2)Ge(3)(0.78(1)≤x≤0.90(1))的晶体是使用熔融 In 金属通量生长的,并通过单晶 X 射线衍射进行了结构表征。(Eu(1-x)Ca(x))(4)In(3)Ge(4)采用单斜 Mg(5)Si(6)-type 结构(空间群 C2/m,Z=2,Pearson 符号 mS22),晶格参数 a=16.874(1)-17.024(2)A,b=4.496(3)-4.556(1)A,c=7.473(4)-7.540(1)A,β=107.306(10)-105.631(3)°。(Eu(1-x)Ca(x))(3)In(2)Ge(3)结晶具有新颖的正交结构(空间群 Pnma,Z=4,Pearson 符号 oP32),其晶格参数范围为 a=7.382(2)-7.4010(9)A,b=4.452(1)-4.4640(6)A,c=23.684(6)-23.734(3)A,具体取决于 Eu/Ca 比。两种情况下的多阴离子亚结构都相关,并基于 InGe(4)边缘共享四面体、Ge(2)二聚体和近乎正方形平面环境中的桥连 In 原子。(Eu(1-x)Ca(x))(4)In(3)Ge(4)结构可视为 Mo(2)FeB(2)-like 和 TiNiSi-like 片段的 1:1 交织,而(Eu(1-x)Ca(x))(3)In(2)Ge(3)可以合理化作为相同结构基序的 2:1 交织。两种相都表现出相当宽的均匀性范围,仅存在混合阳离子。实验结果得到了线性 muffin-tin 轨道紧束缚能带结构计算以及观察到的阳离子位置偏好分析的补充。

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