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K12Au21Sn4 的合成、结构和键合。一种具有密集 Au20 和开放 AuSn4 层的极性金属间化合物。

Synthesis, structure, and bonding in K12Au21Sn4. A polar intermetallic compound with dense Au20 and open AuSn4 layers.

机构信息

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

出版信息

Inorg Chem. 2009 Dec 7;48(23):11108-13. doi: 10.1021/ic901493j.

Abstract

The new phase K(12)Au(21)Sn(4) has been synthesized by direct reaction of the elements at elevated temperatures. Single crystal X-ray diffraction established its orthorhombic structure, space group Pmmn (No. 59), a = 12.162(2); b = 18.058(4); c = 8.657(2) A, V = 1901.3(7) A(3), and Z = 2. The structure consists of infinite puckered sheets of vertex-sharing gold tetrahedra (Au(20)) that are tied together by thin layers of alternating four-bonded-Sn and -Au atoms (AuSn(4)). Remarkably, the dense but electron-poorer blocks of Au tetrahedra coexist with more open and saturated Au-Sn layers, which are fragments of a zinc blende type structure that maximize tetrahedral heteroatomic bonding outside of the network of gold tetrahedra. LMTO band structure calculations reveal metallic properties and a pseudogap at 256 valence electrons per formula unit, only three electrons fewer than in the title compound and at a point at which strong Au-Sn bonding is optimized. Additionally, the tight coordination of the Au framework atoms by K plays an important bonding role: each Au tetrahedra has 10 K neighbors and each K atom has 8-12 Au contacts. The appreciably different role of the p element Sn in this structure from that in the triel members in K(3)Au(5)In and Rb(2)Au(3)Tl appears to arise from its higher electron count which leads to better p-bonding (valence electron concentrations = 1.32 versus 1.22).

摘要

新的 K(12)Au(21)Sn(4) 相是通过元素在高温下的直接反应合成的。单晶 X 射线衍射确定了其正交结构,空间群为 Pmmn(No. 59),a = 12.162(2);b = 18.058(4);c = 8.657(2) A,V = 1901.3(7) A(3),Z = 2。该结构由顶点共享的金四面体(Au(20))的无限褶皱片组成,这些四面体由薄的交替四键 Sn 和 -Au 原子(AuSn(4))层连接在一起。值得注意的是,密集但电子较少的 Au 四面体块与更开放和饱和的 Au-Sn 层共存,后者是闪锌矿型结构的碎片,可最大限度地增加 Au 四面体网络外的四面体杂原子键合。LMTO 能带结构计算揭示了金属性质和 256 个价电子/单位分子式的赝隙,仅比标题化合物少 3 个电子,并且在优化 Au-Sn 键合的点上。此外,K 对 Au 框架原子的紧密配位起着重要的键合作用:每个 Au 四面体有 10 个 K 邻接,每个 K 原子有 8-12 个 Au 接触。Sn 在这种结构中的 p 元素的作用明显不同于 K(3)Au(5)In 和 Rb(2)Au(3)Tl 中的 triel 成员,这似乎是由于其较高的电子数导致更好的 p 键合(价电子浓度=1.32 对 1.22)。

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