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合成、结构与键合:BaTl4。电子亏损金属网络中阳离子包封的尺寸效应。

Synthesis, structure, and bonding of BaTl4. Size effects on encapsulation of cations in electron-poor metal networks.

机构信息

Ames Laboratory and Department of Chemistry, Iowa State University, Ames, Iowa 50011, USA.

出版信息

Inorg Chem. 2011 Jan 3;50(1):238-44. doi: 10.1021/ic1018828. Epub 2010 Dec 7.

Abstract

The synthesis, structure, and bonding of BaTl(4) are described [C2/m, Z = 4, a = 12.408(3), b = 5.351(1), c = 10.383(2) Å, β = 116.00(3)°]. Pairs of edge-sharing Tl pentagons are condensed to generate a network of pentagonal biprisms along b that encapsulate Ba atoms. Alternating levels of prisms along c afford six more bifunctional Tl atoms about the waists of the biprisms, giving Ba a coordination number of 16. Each Tl atom is bonded to five to seven other Tl atoms and to three to five Ba atoms. There is also strong evidence that Hg substitutes preferentially in the shared edges of the Tl biprisms in BaHg(0.80)Tl(3.20) to generate more strongly bound Hg(2) dimers. Cations that are too small relative to the dimensions of the surrounding polyanionic network make this BaTl(4) structure (and for SrIn(4) and perhaps EuIn(4) as well) one stable alternative to tetragonal BaAl(4)-type structures in which cations are bound in larger hexagon-faced nets, as for BaIn(4) and SrGa(4). Characteristic condensation and augmentation of cation-centered prismatic units is common among many relatively cation- and electron-poor, polar derivatives of Zintl phases gain stability. At the other extreme, the large family of Frank-Kasper phases in which the elements exhibit larger numbers of bonded neighbors are sometimes referred to as orbitally rich.

摘要

描述了 BaTl(4) 的合成、结构和键合 [C2/m,Z=4,a=12.408(3),b=5.351(1),c=10.383(2) Å,β=116.00(3)°]。通过共享边连接的 Tl 五边形对被缩合在一起,沿 b 生成五重棱柱的网络,该网络包围 Ba 原子。沿 c 交替的棱柱层为棱柱体腰部提供了六个额外的双功能 Tl 原子,使 Ba 的配位数达到 16。每个 Tl 原子与五个到七个其他 Tl 原子以及三个到五个 Ba 原子键合。也有强有力的证据表明,Hg 优先替代 BaHg(0.80)Tl(3.20)中 Tl 双棱柱的共享边缘,以生成更强键合的 Hg(2)二聚体。与周围多阴离子网络的尺寸相比,相对较小的阳离子使得这种 BaTl(4)结构(对于 SrIn(4) 和可能的 EuIn(4)也是如此)成为四方 BaAl(4)型结构的稳定替代物之一,其中阳离子结合在更大的六边形面网络中,如 BaIn(4)和 SrGa(4)。特征的阳离子中心棱柱单元的缩合和扩充在许多相对阳离子和电子贫化、极性 Zintl 相衍生物中很常见,这些衍生物获得了稳定性。在另一个极端,元素具有更多键合邻居的大型 Frank-Kasper 相家族有时被称为轨道富族。

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