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首页> 外文期刊>Journal of molecular modeling >The mechanisms for N-heterocyclic olefin-catalyzed formation of cyclic carbonate from CO2 and propargylic alcohols
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The mechanisms for N-heterocyclic olefin-catalyzed formation of cyclic carbonate from CO2 and propargylic alcohols

机译:N-杂环烯烃催化由二氧化碳和炔丙醇形成环状碳酸酯的机理

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摘要

The mechanistic details of N-heterocyclic olefin-catalyzed formation of cyclic carbonate from CO2 and propargylic alcohols were investigated by DFT calculations. Six mechanisms, four for the formation of five-membered cyclic carbonate (M-A, M-B, M-B' and M-C), and two for six-membered cyclic carbonate (M-D and M-E), were fully investigated. The energy profiles in dichloromethane showed that M-B is the predominant reaction with the lowest barrier of 31.99 kcal mol(-1), while M-C and M-D may be kinetically competitive to M-B. The very high activation energy of 45.37 kcal mol(-1), 57.07 kcal mol(-1) and 59.61 kcal mol(-1) for M-A, M-B' and M-E, respectively, suggest that they are of lesser importance in the overall mechanism.
机译:通过DFT计算研究了N杂环烯烃催化由CO2和炔丙醇形成环状碳酸酯的机理。充分研究了六种机理,其中四种用于形成五元环状碳酸酯(M-A,M-B,M-B'和M-C),另外两种用于六元环状碳酸酯(M-D和M-E)。二氯甲烷中的能量谱显示,M-B是主要反应,最低垒为31.99 kcal mol(-1),而M-C和M-D可能在动力学上与M-B竞争。 MA,MB'和ME分别具有非常高的活化能45.37 kcal mol(-1),57.07 kcal mol(-1)和59.61 kcal mol(-1),表明它们在整个机理中的重要性较小。

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