Study of Gas-phase Reactions within the Modified Marcus Model. V. Arrhenius Equation for the Reaction CH3OH + CH3 → CH2OH + CH4

Igor Romanskii
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Abstract

A theoretical study of the kinetics of the gas-phase reaction реакции СН3OH + СН3 → СН2OH + СН4 (energy calculation level UCCSD (T)/6-311G**//B3LYP/6-31+G**) in the temperature range 2000–10 K was performed. A discussion is carried out within the framework of a modified version of the Marcus model. The obtained results are used to analyze the Arrhenius equation in terms of the change in temperature of each of the parameters included in the expression for the reaction rate constant. In accordance with the change in the influence of various factors on the shape (slope and curvature) of the Arrhenius plot, the temperature intervals 2000 - 600, 600 - 80 and 80 - 10 K are distinguished.
修正Marcus模型中气相反应的研究。5、反应CH3OH + CH3→CH2OH + CH4的阿伦尼乌斯方程
对2000-10 K范围内的气相反应реакции СН3OH + СН3→СН2OH + СН4(能量计算级UCCSD (T)/6-311G**//B3LYP/6-31+G**)动力学进行了理论研究。在Marcus模型的修改版本的框架内进行了讨论。利用所得结果分析了反应速率常数表达式中各参数的温度变化对Arrhenius方程的影响。根据各种因素对阿伦尼乌斯图形状(斜率和曲率)的影响变化,区分出2000 ~ 600k、600 ~ 80k和80 ~ 10k的温度区间。
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