首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Crystal Structure and Bonding in BaAu5Ga2 and AeAu(4+x)Ga(3-x) (Ae = Ba and Eu): Hexagonal Diamond-Type Au Frameworks and Remarkable Cation/Anion Partitioning in the Ae-Au-Ga Systems
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Crystal Structure and Bonding in BaAu5Ga2 and AeAu(4+x)Ga(3-x) (Ae = Ba and Eu): Hexagonal Diamond-Type Au Frameworks and Remarkable Cation/Anion Partitioning in the Ae-Au-Ga Systems

机译:BaAu5Ga2和AeAu(4 + x)Ga(3-x)(Ae = Ba和Eu)中的晶体结构和键合:六角金刚石型Au框架和Ae-Au-Ga系统中显着的阳离子/阴离子分配

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摘要

Five new polar intermetallic compounds in the Ae-Ga-Au system (Ae = Ba, Eu), BaAu5Ga2 (I), BaAu4.3Ga2.7 (II), Ba1.0Au4.5Ga2.4 (III), EuAu4.8Ga2.2 (IV), and Eu1.1Au4.4Ga2.2 (V), have been synthesized and their crystal structures determined by single-crystal X-ray diffraction. I crystallizes in the orthorhombic crystal system with a large unit cell [Pearson symbol oP64; Pnma, Z = 8, a = 8.8350(5) angstrom, b = 7.1888(3)angstrom, c = 20.3880(7) angstrom], whereas all other compounds are hexagonal [hP24; P (6) over bar 2m, Z = 3, a = 8.54-8.77(1) angstrom, c = 7.19-7.24(1) angstrom]. Both structures contain mutually orthogonal layers of Au6 hexagons in chair and boat conformations, resulting in a hexagonal diamond-like network. Ae atoms and additional (Au/Ga)(3) groups are formally encapsulated by (Au-6)(2) distorted hexagonal prisms formed of three edge-sharing hexagons in the boat conformation or, alternatively, lie between two Au6 hexagons in the chair conformation. The (Au/Ga)(3) groups can be substituted by Ae atoms in some of the hexagonal structures with no change to the structural symmetry. Tight-binding electronic structure calculations using linear-muffin-tin-orbital methods on idealized models BaAu5Ga2 and BaAu4Ga3 show both compounds to be metallic with evident pseudogaps near the corresponding Fermi levels. The integrated crystal orbital Hamilton populations are dominated by Au-Au and Au-Ga orbital interactions, although Ba-Au and Ba-Ga contributions are significant. Furthermore, Au-Au interactions vary considerably along different directions in the unit cells, with the largest values for the hexagons in the boat conformation and the lowest values for those in the chair conformation. II revealed that partial substitution of Au atoms in the hexagonal diamond net by a post-transition element (Ga) may occur in this family, whereas the sizes of the (Au/Ga)(3) groups and strong Ba-Au covalent interactions allow for their mutual replacement in the voids.
机译:Ae-Ga-Au系统中的五个新的极性金属间化合物(Ae = Ba,Eu),BaAu5Ga2(I),BaAu4.3Ga2.7(II),Ba1.0Au4.5Ga2.4(III),EuAu4.8Ga2。已经合成了图2(IV)和Eu1.1Au4.4Ga2.2(V),并通过单晶X射线衍射确定了它们的晶体结构。我在具有大晶胞的正交晶体系统中结晶[Pearson符号oP64; Pnma,Z = 8,a = 8.8350(5)埃,b = 7.1888(3)埃,c = 20.3880(7)埃],而所有其他化合物均为六边形[hP24; P(6)超过2m,Z = 3,a = 8.54-8.77(1)埃,c = 7.19-7.24(1)埃]。两种结构均在椅子和船形结构中包含相互正交的Au6六边形层,从而形成六边形的菱形网络。 Ae原子和附加的(Au / Ga)(3)基团由(Au-6)(2)扭曲的六角形棱镜正式包封,该六角形棱镜由船形的三个边缘共享的六边形形成,或者位于(au / Ga)(3)的两个Au6六角形之间椅子的构造。 (Au / Ga)(3)基团在某些六边形结构中可以被Ae原子取代,而结构对称性没有变化。在理想模型BaAu5Ga2和BaAu4Ga3上使用线性松饼-锡-轨道方法进行的紧密结合电子结构计算表明,这两种化合物均为金属,在相应的费米能级附近具有明显的假间隙。尽管Ba-Au和Ba-Ga的贡献很大,但完整的晶体轨道哈密顿族群以Au-Au和Au-Ga轨道相互作用为主。此外,Au-Au相互作用在晶胞中沿不同方向变化很大,船形中六边形的最大值最大,而椅形中六边形的最小值最低。 II显示,在该族中可能发生六价钻石网中的Au原子被过渡后元素(Ga)部分取代的情况,而(Au / Ga)(3)基团的大小和强的Ba-Au共价相互作用使得在空隙中相互替换。

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