首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Substitution of Au or Hg into BaTI2 and BaIn2. New ternary examples of smaller CeCu2-type intermetallic phases
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Substitution of Au or Hg into BaTI2 and BaIn2. New ternary examples of smaller CeCu2-type intermetallic phases

机译:将Au或Hg替换为BaTI2和BaIn2。较小的CeCu2型金属间相的新三元实例

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摘要

The compounds BaAu0.40(2)Tl1.60(7) (1), BaAu0.36(4)In1.64(4) (2), and BaHg0.92(2)In1.08(2) (3) have been prepared by high-temperature techniques. Single-crystal X-ray diffraction shows that these have the orthorhombic CeCu2-type structure, lmma,Z = 4 (a = 5.140(1), 5.104(1), 5.145(1) angstrom; b = 8,317(2), 8.461(2), 8.373(2) angstrom; c = 8.809(2), 8.580(2), 8.715(2) angstrom, respectively). The structure consists of a four-linked honeycomblike polyanion (4(2)6(3)8) of (3)(infinity)[Tr-2](2-) (Tr = ln or Tl) with encapsulated Ba2+ cations. The Au or Hg randomly replace Tr in a single type of site. The two gold phases exhibit appreciable nonstoichiometry ranges. Band calculations (EHTB) demonstrate that the three compounds are electron-poor and metallic, and the latter has been confirmed for 1 through resistivity and magnetic susceptibility measurements. The orthorhombic structure of 1 contrasts with the hexagonal structure of BaTl2 (Caln(2)-type, P6(3)/mmc), a change that appears to be driven by substitution of the smaller Au atoms into the polyanion network. Relativistic effects for the heavier Au and Hg are evidently responsible for decreases in lattice parameters and bond lengths from Baln(2) to those in isostructural 2 and 3.
机译:化合物BaAu0.40(2)Tl1.60(7)(1),BaAu0.36(4)In1.64(4)(2)和BaHg0.92(2)In1.08(2)(3)已经通过高温技术制备。单晶X射线衍射表明它们具有正交的CeCu2型结构,lmma,Z = 4(a = 5.140(1),5.104(1),5.145(1)埃; b = 8,317(2),8.461 (2),8.373(2)埃; c = 8.809(2),8.580(2),8.715(2)埃)。该结构由(3)(无穷大)[Tr-2](2-)(Tr = ln或Tl)与封装的Ba2 +阳离子组成的四键蜂窝状聚阴离子(4(2)6(3)8)组成。 Au或Hg在单一类型的位点中随机取代Tr。这两个金相表现出明显的非化学计量范围。带计算(EHTB)证明这三种化合物是电子贫乏的和金属的,并且通过电阻率和磁化率测量已证实后者为1。 1的正交结构与BaTl2的六边形结构(Caln(2)型,P6(3)/ mmc)形成对比,这种变化似乎是由较小的Au原子取代成聚阴离子网络所驱动的。相对较重的Au和Hg的相对论效应显然是导致晶格参数和键长从Baln(2)降至同构2和3的键长减小的原因。

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