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DFT calculations of the alkylation reaction mechanisms of isobutane and 2-butene catalyzed by Bronsted acids

机译:布朗斯台德酸催化异丁烷和2-丁烯烷基化反应机理的DFT计算

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摘要

Density functional theory method was employed to determine the alkylation reaction course of 2-butene and isobutane.A carbonium ion mechanism is supported through this theoretical simulation.The first step is the formation of sec-C_4H_9+ from the protonation of 2-butene.The carbonium ion reacts with isobutane to form tert-butyl carbonium ion via hydride transfer.This carbonium ion reacts with 2-butene quickly to produce trimethylpentane carbonium ion (TMP+),which is finally converted to TMP at a high reaction rate via hydride transfer from isobutane.Their transition states are obtained by QST2 method and the transition states are verified by frequency analysis.The calculation results indicate that the energy barrier of each reaction is below zero,suggesting that each reaction step is fast because of the characteristics of carbonium ions.However,the additive reaction is considered to be the rate-limiting step.
机译:采用密度泛函理论方法确定了2-丁烯与异丁烷的烷基化反应过程,并通过理论模拟支持了碳离子的机理,第一步是由2-丁烯的质子化反应生成sec-C_4H_9 +。离子与异丁烷通过氢化物转移反应生成叔丁基碳鎓离子,该碳鎓离子与2-丁烯快速反应生成三甲基戊烷碳鎓离子(TMP +),最终通过异丁烷的氢化物转移以高反应速率转化为TMP。通过QST2方法获得了它们的过渡态,并通过频率分析验证了它们的过渡态。计算结果表明,每个反应的能垒均小于零,这表明每个反应步骤由于碳离子的特性而很快。加成反应被认为是限速步骤。

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