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首页> 外文期刊>The Journal of Organic Chemistry >Reactions at interfaces: Oxygenation of n-butyl ligands anchored on silica surfaces with methyl(trifluoromethyl)dioxirane
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Reactions at interfaces: Oxygenation of n-butyl ligands anchored on silica surfaces with methyl(trifluoromethyl)dioxirane

机译:界面反应:锚固在二氧化硅表面的正丁基配体被甲基(三氟甲基)二环氧乙烷氧化

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The oxygenation of n-butyl and n-butoxy chains bonded to silica with methyl(trifluoromethyl)dioxirane (1) revealed the ability of the silica matrix to release electron density toward the reacting C_2-H σ-bond through the Si-C1 and Si-O_1 σ-bonds connecting the alkyl chain to the surface (silicon β-effect). The silica surface impedes neither the alkyl chain adopting the conformation required for the silicon β-effect nor dioxirane 1 approaching the reactive C_2 methylene group. Reaction regioselectivity is insensitive to changes in the solvation of the reacting system, the location of organic ligands on the silica surface, and the H-bonding character of the silica surface. Reaction rates are faster for those organic ligands either within the silica pores or bonded to hydrophilic silica surfaces, which evidence the enhanced molecular dynamics of confined dioxirane 1 and the impact of surface phenomena on the reaction kinetics. The oxygenation of n-butyl and n-butoxy chains carrying trimethylsilyl, trimethoxysilyl, and tert-butyl groups with dioxirane 1 under homogeneous conditions confirms the electronic effects of the silyl substituents and the consequences of steric hindrance on the reaction rate and regioselectivity. Orthosilicic acid esters react preferentially at the methylene group adjacent to the oxygen atom in clear contrast with the reactivity of the carboxylic or sulfonic acid alkyl esters, which efficiently protect this position toward oxidation with 1 (Figure presented).
机译:用甲基(三氟甲基)二环氧乙烷(1)氧化键合到二氧化硅的正丁基和正丁氧基链显示了二氧化硅基质能够通过Si-C1和Si向反应的C_2-Hσ键释放电子密度的能力-O_1σ键将烷基链连接到表面(硅β效应)。二氧化硅表面既不阻碍采用硅β效应所需的构象的烷基链,也不阻碍接近反应性C_2亚甲基的二环氧乙烷1。反应区域选择性对反应体系的溶剂化,二氧化硅表面上有机配体的位置以及二氧化硅表面的H键结合特性的变化不敏感。对于那些在二氧化硅孔内或与亲水性二氧化硅表面键合的有机配体,反应速度更快,这证明了受限的二环氧乙烷1的分子动力学增强以及表面现象对反应动力学的影响。在均相条件下,用二环氧乙烷1对带有三甲基甲硅烷基,三甲氧基甲硅烷基和叔丁基的正丁基和正丁氧基链进行氧合,证实了甲硅烷基取代基的电子效应以及位阻对反应速率和区域选择性的影响。与羧酸或磺酸烷基酯的反应性形成鲜明对比的是,原硅酸酯优先在与氧原子相邻的亚甲基处反应,从而有效地保护了该位置不被1氧化(图示)。

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