首页> 外文期刊>Journal of Organometallic Chemistry >TRIMETHYLCHLOROSILANE-MODIFIED CLEMMENSEN REDUCTION OF METALLOCENYL KETONES - TRAPPING AND X-RAY STRUCTURES OF ALIPHATIC, OLEFINIC, SILYLATED PINACOLIC, AND REARRANGED PINACOLONIC PRODUCTS
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TRIMETHYLCHLOROSILANE-MODIFIED CLEMMENSEN REDUCTION OF METALLOCENYL KETONES - TRAPPING AND X-RAY STRUCTURES OF ALIPHATIC, OLEFINIC, SILYLATED PINACOLIC, AND REARRANGED PINACOLONIC PRODUCTS

机译:三甲基氯硅烷改性的克林曼森还原金属烯酮-脂肪族,烯烃类,硅烷化的松香油和变质松香油产品的捕获和X射线结构

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摘要

The Clemmensen reduction of a carbonyl group to give, in the simplest cases, a methylene unit, is one of the more familiar reactions in organic chemistry. Trimethylchlorosilane as a replacement for the proton allows controlled reductive deoxygenation of carbonyl compounds under formally anhydrous conditions as an alternative to the McMurry dicarbonyl coupling reaction. Aromatic carbonyl compounds with electron-donor substituents are preferred substrates for this reaction to yield symmetrical olefins in good yield. The high donor capacity of metallocenyl groups should especially favor the clean formation of olefins from the corresponding metallocenyl ketones, In this study, a number of ferrocenyl and ruthenocenyl aldehydes and ketones were treated with Zn and trimethylchlorosilane under controlled anhydrous reaction conditions with (a) catalytical and (b) low amounts of H+ present. The observed main products include alkanes, alkenes, silylated pinacols, and rearranged pinacolones, which have been characterized by spectroscopic methods and by X-ray analyses. The diverse outcome in these reactions indicates a reaction mechanism which involves electrophilic catalysis with different energetically similar pathways. [References: 54]
机译:在最简单的情况下,将Clemmensen羰基还原为亚甲基单元是有机化学中较常见的反应之一。用三甲基氯硅烷代替质子,可以在形式上无水的条件下控制羰基化合物的还原性脱氧,以替代McMurry二羰基偶联反应。具有电子给体取代基的芳族羰基化合物是该反应的优选底物,该反应以良好的产率产生对称的烯烃。茂金属基团的高供体容量应特别有利于从相应的茂金属酮中干净地形成烯烃。在这项研究中,在控制的无水反应条件下,用锌和三甲基氯硅烷处理了许多二茂铁基和钌烯基醛和酮,其中(a)催化(b)存在少量的H +。观察到的主要产品包括烷烃,烯烃,甲硅烷基频哪醇和重排列的频哪醇酮,它们已通过光谱法和X射线分析表征。这些反应的不同结果表明反应机理涉及具有不同能量相似途径的亲电催化。 [参考:54]

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