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从一维到三维:波纹 ∞(1)[NiGe] 带状物作为具有 AeNiGe(Ae = Mg、Sr、Ba)晶体结构和化学键的碱土金属 Ae/Ni/Ge 相的构建块。

From one to three dimensions: corrugated ∞(1)[NiGe] ribbons as a building block in alkaline earth metal Ae/Ni/Ge phases with crystal structure and chemical bonding in AeNiGe (Ae = Mg, Sr, Ba).

机构信息

Department of Chemistry, Technische Universität München, Lichtenbergstr. 4, 85747 Garching, Germany.

出版信息

Inorg Chem. 2013 Jun 17;52(12):6905-15. doi: 10.1021/ic302681t. Epub 2013 Jun 6.

DOI:10.1021/ic302681t
PMID:23741964
Abstract

The new equiatomic nickel germanides MgNiGe, SrNiGe, and BaNiGe have been synthesized from the elements in sealed tantalum tubes using a high-frequency furnace. The compounds were investigated by X-ray diffraction both on powders and single crystals. MgNiGe crystallizes with TiNiSi-type structure, space group Pnma, Z = 4, a = 6.4742(2) Å, b = 4.0716(1) Å, c = 6.9426(2) Å, wR2 = 0.033, 305 F(2) values, 20 variable parameters. SrNiGe and BaNiGe are isotypic and crystallize with anti-SnFCl-type structure (Z = 4, Pnma) with a = 5.727(1) Å, b = 4.174(1) Å, c = 11.400(3) Å, wR2 = 0.078, 354 F(2) values, 20 variable parameters for SrNiGe, and a = 5.969(4) Å, b = 4.195(1) Å, c = 11.993(5) Å, wR2 = 0.048, 393 F(2) values, 20 variable parameters for BaNiGe. The increase of the cation size leads to a reduction of the dimensionality of the [NiGe] polyanions. In the MgNiGe structure the nickel and germanium atoms build a ∞(3)[NiGe] network with magnesium atoms in the channels. In SrNiGe and BaNiGe the ∞(1)[NiGe] ribbons are separated by strontium/barium atoms, whereas in the known CaNiGe structure the ribbons are fused to two-dimmensional atom slabs. The crystal chemistry and chemical bonding in AeNiGe (Ae = Mg, Ca, Sr, Ba) are discussed. The experimental results are reconciled with electronic structure calculations performed using the tight-binding linear muffin-tin orbital (TB-LMTO-ASA) method.

摘要

新的等原子镍锗化物 MgNiGe、SrNiGe 和 BaNiGe 已从元素在密封钽管中使用高频炉合成。化合物通过 X 射线衍射进行了粉末和单晶的研究。MgNiGe 具有 TiNiSi 型结构,空间群 Pnma,Z=4,a=6.4742(2) Å,b=4.0716(1) Å,c=6.9426(2) Å,wR2=0.033,305 F(2) 值,20 个变量参数。SrNiGe 和 BaNiGe 是同型的,具有反-SnFCl 型结构(Z=4,Pnma),a=5.727(1) Å,b=4.174(1) Å,c=11.400(3) Å,wR2=0.078,354 F(2) 值,20 个变量参数用于 SrNiGe,a=5.969(4) Å,b=4.195(1) Å,c=11.993(5) Å,wR2=0.048,393 F(2) 值,20 个变量参数用于 BaNiGe。阳离子尺寸的增加导致[NiGe]多阴离子的维度降低。在 MgNiGe 结构中,镍和锗原子构建了一个具有镁原子在通道中的∞(3)[NiGe]网络。在 SrNiGe 和 BaNiGe 中,∞(1)[NiGe] 带由锶/钡原子隔开,而在已知的 CaNiGe 结构中,带融合成二维原子片。讨论了 AeNiGe(Ae=Mg、Ca、Sr、Ba)的晶体化学和化学键。实验结果与使用紧束缚线性 muffin-tin 轨道(TB-LMTO-ASA)方法进行的电子结构计算相协调。

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