离子液体结构元素对Knoevenagel缩合反应的不同影响

S. Zeltkalne, A. Zicmanis
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引用次数: 1

摘要

制备了含有1,3-二取代咪唑阳离子和磷酸二甲基(DMP)阴离子以及氯阴离子的离子液体(ILs),并通过1H NMR谱、色谱和滴定纯度控制、水分含量和热稳定性测定对其进行了表征。带有DMP阴离子的il只在240℃以上的温度下分解。这些il作为Knoevenagel缩合反应的反应介质(溶剂)和催化剂进行了测试。评价了il中最重要的结构元素对缩合反应速率和产率的影响。IL阴离子对缩合反应的影响最大,甚至氯阴离子对Knoevenagel缩合也有一定的催化作用。咪唑离子中的侧链对反应过程影响很小。咪唑离子与缩合反应过渡态形成氢键的能力导致反应速率显著减慢。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Different Influence of Structure Elements of Ionic Liquids on the Knoevenagel Condensation Reactions
Ionic liquids (ILs) with 1,3-disubstituted imidazolium cations and the dimethyl phosphate (DMP) anion, as well as the chloride anion were prepared and characterized by 1H NMR spectra, chromatographic and titrimetric purity control, and determination of the moisture content and thermal stability. ILs with the DMP anion decompose only at temperatures above 240°C. These ILs were tested as both reaction media (solvents) and catalysts for the Knoevenagel condensation reaction. The impact of the most significant structure elements of ILs was evaluated for the rates and yields of the condensation reaction. IL anions have the greatest effect on the condensation reactions, and even the chloride anion has some catalytic effect on the Knoevenagel condensation. Side chains in the imidazolium cations influence the reaction course very little. The ability of the imidazolium cations to form hydrogen bonding with the transition state of the condensation reaction leads to a remarkable slowdown in the reaction rates.
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