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A theoretical study of the substituent effect on reactions of amines, carbon dioxide and ethylene oxide catalyzed by binary ionic liquids

机译:二元离子液体催化取代基对胺,二氧化碳和环氧乙烷反应的理论研究

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摘要

The reaction mechanisms of one-pot conversion of carbon dioxide, ethylene oxide and amines to 3-substituted-2-oxazolidinones catalyzed by the binary ionic liquids of BmimBr and BmimOAc were investigated using DFT methods. In this work, we focus on exploring how the different substituents in amines affect the yields of 3-substituted-2-oxazolidinones. The comparison of calculated free energy profiles and pathways reveals that the electronic structures of the substitutional groups in amines have a substantial influence on the nucleophilic properties of nitrogen atoms of key intermediates, which leads to a discrepancy in the activation barriers. The comparison of the calculated activation barriers of key steps and experimental yields indicates that an anticorrelation relationship exists between them. The current theoretical study inspires us to design new substrates for CO2 conversion by modulating the substituents in substrates.
机译:利用DFT方法研究了BmimBr和BmimOAc二元离子液体催化一锅转化二氧化碳,环氧乙烷和胺为3-取代的2-恶唑烷酮的反应机理。在这项工作中,我们专注于探索胺中不同的取代基如何影响3-取代的-2-恶唑烷酮的产率。计算出的自由能分布图和途径的比较表明,胺中取代基的电子结构对关键中间体氮原子的亲核性质有重大影响,这会导致活化壁垒的差异。计算出的关键步骤的激活势垒与实验产率的比较表明,它们之间存在反相关关系。当前的理论研究启发我们通过调节底物中的取代基来设计用于CO 2 转化的新底物。

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