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一系列稳定的二烷基取代硅-硫属元素双键化合物的合成、性质及反应

Synthesis, properties, and reactions of a series of stable dialkyl-substituted silicon-chalcogen doubly bonded compounds.

作者信息

Iwamoto Takeaki, Sato Katsuhiro, Ishida Shintaro, Kabuto Chizuko, Kira Mitsuo

机构信息

Department of Chemistry, and Research and Analytical Center for Giant Molecules, Graduate School of Science, Tohoku University, Aoba-ku, Sendai 980-8578, Japan.

出版信息

J Am Chem Soc. 2006 Dec 27;128(51):16914-20. doi: 10.1021/ja065774f.

Abstract

The first dialkyl-substituted silicon-chalcogen doubly bonded compounds [R2Si=X; R2=1,1,4,4-tetrakis(trimethylsilyl)butane-1,4-diyl, X = S (4), Se (5), and Te (6)]were synthesized by the reactions of an isolable dialkylsilylene R2Si: (3) with phosphine sulfide, elemental selenium, and elemental tellurium, respectively. Systematic changes of characteristics of silicon-chalcogen double bonds are elucidated by X-ray analysis, UV-vis spectroscopy, and DFT calculations. In the solid state, the unsaturated silicon atom in 4-6 adopts planar geometry and the extent of the shortening of Si=X double bonds from the corresponding Si-X single bonds decreases in the order 4 > 5 > 6. In the absorption spectra of 4-6, pi -->pi* transition bands are observed distinctly in addition to n -->pi* transition bands. Both the n -->pi* and pi -->pi* transitions are red-shifted in the order 4 < 5 < 6, and the difference between the energies of the two transitions is kept almost constant among 4-6. The tendency is explained using the qualitative perturbation theory and is reproduced by the DFT calculations for model silanechalcogenones. Addition reactions of water, methanol, and isoprene to 4-6 are reported.

摘要

首个二烷基取代的硅-硫族元素双键化合物[R₂Si=X;R₂=1,1,4,4-四(三甲基硅基)丁烷-1,4-二亚基,X = S(4)、Se(5)和Te(6)]分别通过可分离的二烷基硅烯R₂Si:(3)与硫化膦、元素硒和元素碲反应合成。通过X射线分析、紫外-可见光谱和密度泛函理论计算阐明了硅-硫族元素双键特征的系统变化。在固态中,4-6中的不饱和硅原子采用平面几何构型,Si=X双键相对于相应Si-X单键的缩短程度按4 > 5 > 6的顺序降低。在4-6的吸收光谱中,除了n→π跃迁带外,还明显观察到π→π跃迁带。n→π和π→π跃迁均按4 < 5 < 6的顺序发生红移,并且在4-6中这两个跃迁的能量差几乎保持恒定。使用定性微扰理论解释了该趋势,并通过对模型硅烷硫族酮的密度泛函理论计算得以重现。报道了水、甲醇和异戊二烯与4-6的加成反应。

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