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五配位和六配位硅螯合物之间的互变异构平衡。两个五配位硅之间的氯桥。

Tautomeric equilibrium between penta- and hexacoordinate silicon chelates. A chloride bridge between two pentacoordinate silicons.

作者信息

Kalikhman I, Girshberg O, Lameyer L, Stalke D, Kost D

机构信息

Department of Chemistry, Ben-Gurion University, Beer-Sheva 84105, Israel.

出版信息

J Am Chem Soc. 2001 May 23;123(20):4709-16. doi: 10.1021/ja004118r.

Abstract

The reaction of O-trimethylsilyl-1,1-dimethyl-2-trifluoroacetylhydrazine (1a) with chloromethyl(methyl)dichlorosilane affords an unexpected equilibrium mixture, 10a right arrow over left arrow 11a, between a neutral hexacoordinate silicon chelate with a covalent chloro ligand (10a) and an ionic pentacoordinate silicon complex (11a). The equilibrium reaction consists formally of a migration of the covalent chloro ligand from silicon to an adjacent ammonium nitrogen, as a chloride anion, and thus constitutes a novel type of tautomeric reaction. Crystallographic and NMR data provide evidence for the reaction. Temperature, solvent, substituent, and counterion effects on the tautomeric equilibrium are discussed: when the temperature of the mixture is raised, the equilibrium ratio 10a/11a increases. Formation of the mixture in toluene, a nonionizing solvent, shifts the equilibrium completely toward the neutral 10a. When the initial hydrazide has a phenyl (11c) or a hydrogen (11b) group as substituent, rather than CF3, the equilibrium is shifted to the ionic side. Replacement of the chloride counterion by triflate, using trimethylsilyl triflate, shifts the 10a/11a mixture to the ionic side. Low-temperature NMR monitoring of the stepwise formation of 10/11 was carried out and provided insight into the reaction mechanism. In an attempt to grow crystals of 11c, the pentacoordinate tautomer analogue, an unprecedented chloride-bridged disiloxane complex, with two pentacoordinate silicons sharing a common axial chloro ligand, crystallized and was characterized and described.

摘要

O-三甲基甲硅烷基-1,1-二甲基-2-三氟乙酰肼(1a)与氯甲基(甲基)二氯硅烷反应生成了一个意想不到的平衡混合物,即具有共价氯配体的中性六配位硅螯合物(10a)和离子型五配位硅配合物(11a)之间的10a⇌11a平衡。该平衡反应形式上是共价氯配体从硅迁移至相邻的铵氮上形成氯离子,因此构成了一种新型的互变异构反应。晶体学和核磁共振数据为该反应提供了证据。讨论了温度、溶剂、取代基和抗衡离子对互变异构平衡的影响:当混合物温度升高时,平衡比10a/11a增大。在甲苯(一种非电离溶剂)中形成混合物会使平衡完全向中性的10a方向移动。当初始酰肼具有苯基(11c)或氢(11b)基团作为取代基而非CF3时,平衡会向离子型一侧移动。使用三氟甲磺酸三甲基硅酯将氯离子抗衡离子替换为三氟甲磺酸根会使10a/11a混合物向离子型一侧移动。对10/11逐步形成过程进行了低温核磁共振监测,从而深入了解了反应机理。在尝试生长五配位互变异构体类似物11c的晶体时,一种前所未有的氯桥连二硅氧烷配合物结晶出来,该配合物有两个五配位硅共享一个共同的轴向氯配体,并对其进行了表征和描述。

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