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Zr(2)Te的合成与晶体结构。与同型Sc(2)Te键合的差异以及与同类Hf(2)Te和Zr(2)Se结构的关系。

Synthesis and Crystal Structure of Zr(2)Te. Distinctions in Bonding to Isotypic Sc(2)Te and the Relationship to the Structures of Congeneric Hf(2)Te and Zr(2)Se.

作者信息

Örlygsson Gissur, Harbrecht Bernd

机构信息

Department of Chemistry and Materials Science Centre, Philipps University, D-35032 Marburg, Germany.

出版信息

Inorg Chem. 1999 Jul 12;38(14):3377-3383. doi: 10.1021/ic990024a.

Abstract

Zr(2)Te is accessible by high-temperature synthesis. The structure of the zirconium-rich telluride was determined by means of powder X-ray diffraction to be orthorhombic, Pnma (No. 62), Z = 12, Pearson symbol oP36, a = 1995.0(2) pm, b = 382.36(2) pm, c = 1065.63(9) pm. Pairwise interpenetrating columns of trans-face-shared, centered Zr(9) cuboids, reminiscent of the bcc high-temperature form of zirconium can be recognized as the topologically characteristic structural feature. Tellurium atoms capping the remaining square faces complete the motif of a [Zr(8)Te(4)] double string running parallel [010]. The tellurium atoms are 7-, 8- and 9-fold coordinated by zirconium. The coordination figures represent mono-, bi- and tricapped distorted trigonal prisms, with zirconium atoms capping the square faces of the prisms. Extended Hückel calculations revealed distinctions in bonding in Zr(2)Te and the isotypic Sc(2)Te. According to Mulliken overlap populations, the heteronuclear interactions are similar in both tellurides. However, the lower valence electron concentration available for M-M bonding in Sc(2)Te is reflected in a considerable restriction of the attractive homonuclear interactions to one-dimensional metal cores, whereas in Zr(2)Te M-M bonding regions extend in space. The structure of Zr(2)Te is contrasted with two other types of bcc fragment structures adopted by the congeneric Hf(2)Te and Zr(2)Se. We show that the structural diversity observed for various dimetal chalcogenides is controlled by an intimate interplay of electronic and geometric factors.

摘要

Zr₂Te可通过高温合成获得。通过粉末X射线衍射确定,富锆碲化物的结构为正交晶系,空间群Pnma(编号62),Z = 12,皮尔逊符号oP36,a = 1995.0(2) pm,b = 382.36(2) pm,c = 1065.63(9) pm。可以识别出由反面共享的、居中的Zr₉长方体构成的成对互穿柱体,这让人联想到锆的体心立方高温形式,它是拓扑特征性结构特征。覆盖其余正方形面的碲原子完成了平行于[010]方向延伸的[Zr₈Te₄]双链结构单元。碲原子由锆原子7、8和9配位。配位图形表示单帽、双帽和三帽畸变三角棱柱,锆原子覆盖棱柱的正方形面。扩展休克尔计算揭示了Zr₂Te和同型Sc₂Te在键合方面的差异。根据穆利肯重叠布居,两种碲化物中的异核相互作用相似。然而,Sc₂Te中可用于M-M键合的较低价电子浓度反映在吸引性同核相互作用显著限制为一维金属核,而在Zr₂Te中M-M键合区域在空间中延伸。将Zr₂Te的结构与同属的Hf₂Te和Zr₂Se所采用的另外两种体心立方片段结构进行了对比。我们表明,各种二金属硫属化物中观察到的结构多样性受电子和几何因素的密切相互作用控制。

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