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Cl-Te-Cl片段的可塑性。(1-硫杂-2-碲杂-1-苯基-4-氯)环戊烷2,2,2-三氯化物的合成、单晶X射线和自然键轨道研究。

Plasticity of Cl-Te-Cl Fragments. Synthesis, Single-Crystal X-ray, and NBO Study of (1-Thia-2-tellura-1-phenyl-4-chloro)cyclopentane 2,2,2-Trichloride.

作者信息

Sundberg Markku R., Laitalainen Tarja, Bergman Jan, Uggla Rolf, Matikainen Jorma, Kaltia Seppo

机构信息

Department of Chemistry, Laboratories of Inorganic Chemistry and Organic Chemistry, P.O. Box 55, FIN-00014 University of Helsinki, Finland, and Department of Organic Chemistry, CNT, NOVUM, S-14157 Huddinge, Sweden.

出版信息

Inorg Chem. 1998 Jun 1;37(11):2786-2791. doi: 10.1021/ic970406l.

Abstract

Tellurium tetrachloride and allylphenyl sulfide react to form (1-thia-2-tellura-1-phenyl-4-chloro)cyclopentane 2,2,2-trichloride. The crystal and molecular structure were determined by single-crystal X-ray techniques. The crystals belong to the monoclinic system, space group P2(1)/c (No. 14) with a = 6.020(3) Å, b = 11.46(1) Å, c = 20.156(2) Å, beta = 97.53(2) degrees, V = 1379(1) Å(3), and Z = 4. The structure was refined to the final R value of 0.036. The coordination around Te(IV) is distorted psi octahedral with three Cl atoms in the equatorial positions. The axial Te(1)-C(1) bond opposite to the lone pair of electrons at the Te(IV) atom completes the coordination polyhedron. The intramolecular Te-S distance is 2.903(3) Å. Symmetric and asymmetric deformation modes were established to describe the plasticity of the Cl-Te-Cl fragments extracted from the Cambridge Structural Database. The hypervalency of Te(IV) manifests itself as plasticity in the equatorial plane of the coordination sphere. The NBO calculations show that all of the equatorial Te-Cl bonds are highly polarized and the electrons reside mainly on the Cl atoms.

摘要

四氯化碲与烯丙基苯基硫醚反应生成(1-硫杂-2-碲杂-1-苯基-4-氯)环戊烷-2,2,2-三氯化物。通过单晶X射线技术确定了晶体和分子结构。晶体属于单斜晶系,空间群为P2(1)/c(编号14),a = 6.020(3) Å,b = 11.46(1) Å,c = 20.156(2) Å,β = 97.53(2)°,V = 1379(1) Å(3),Z = 4。结构精修至最终R值为0.036。Te(IV)周围的配位呈扭曲的ψ八面体,三个Cl原子位于赤道位置。与Te(IV)原子孤对电子相对的轴向Te(1)-C(1)键完成了配位多面体。分子内Te-S距离为2.903(3) Å。建立了对称和不对称变形模式来描述从剑桥结构数据库中提取的Cl-Te-Cl片段的可塑性。Te(IV)的超价态表现为配位球赤道平面上的可塑性。自然键轨道(NBO)计算表明,所有赤道Te-Cl键都高度极化,电子主要位于Cl原子上。

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