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首页> 外文期刊>Catalysis science & technology >How and why a [Bu4P][Im]/CO2 system efficiently catalyzes the hydration of propargylic alcohols to α-hydroxy ketones: electrostatically controlled reactivity
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How and why a [Bu4P][Im]/CO2 system efficiently catalyzes the hydration of propargylic alcohols to α-hydroxy ketones: electrostatically controlled reactivity

机译:如何以及为什么[Bu4P][我]/二氧化碳系统有效吗催化丙炔醇的水合作用对α羟基酮:静电控制反应性

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摘要

Density functional theory calculations have been performed to understand the intriguing experimental observations on the hydration of propargylic alcohols to α-hydroxy ketones catalyzed by task-specific ionic liquids (ILs) and CO2. Focusing on a representative propargylic alcohol, 2-methylbut-3-yn-2-ol, we explored its hydration mechanism and the catalytic reactivities of different ILs towards the reaction in detail. The calculated results show the electrostatically controlled character of the reaction, where the reactivity depends on not only the anion's own nature but also its counterion cation that can regulate and control the anion basicity via electrostatic and H-bonding interactions. The reaction is proposed to proceed via an energetically viable mechanism that features the initial addition of CO2 to the hydroxyl group of the propargylic alcohol with assistance of the IL anion as a proton acceptor. The different catalytic performances of several ILs are attributed to their different proton-accepting capabilities. The best catalytic performance of [Bu4P][Im] is ascribed to its most efficient proton-accepting properties. The theoretical results provide a foundation for exploiting the controlled synthesis of α-hydroxy ketones as well as cyclic carbonates and oxazolidinones from the hydration of propargylic alcohols or propargylic amines.
机译:密度泛函理论计算了解有趣的表演实验观测的水合作用丙炔醇,α羟基酮由特定于任务的离子液体催化(ILs)和二氧化碳。酒精,2-methylbut-3-yn-2-ol,我们探索它水化机理和催化反应活性不同的图书馆向详细的反应。静电控制字符的反应,反应取决于只有阴离子的性质也是它反离子阳离子,可以调节和控制阴离子通过静电和碱度H-bonding交互。继续通过积极可行的机制特性的初始增加二氧化碳丙炔醇的羟基援助IL阴离子的质子受体。几个不同的催化性能ILs归因于他们的不同proton-accepting功能。的性能[Bu4P] (Im)归结为最高效proton-accepting属性。理论结果提供一个基础利用控制合成α羟基酮和环碳酸盐oxazolidinones丙炔的水合作用醇或丙炔胺。

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