Ochando-Pardo Montserrat, Nebot-Gil Ignacio, González-Lafont Angels, Lluch José M
Universitat de València, Institut de Ciència Molecular, Apdo. 22085, 46071 València, Spain.
Chemistry. 2007;13(4):1180-90. doi: 10.1002/chem.200600529.
High-level electronic structure calculations and master equation analyses were carried out to obtain the pressure- and temperature-dependent rate constants of the methyl vinyl ketone+OH and methacrolein+OH reactions. The balance between the OH addition reactions at the high-pressure limit, the OH addition reactions in the fall-off region, and the pressure-independent hydrogen abstractions involved in these multiwell and multichannel systems, has been shown to be crucial to understand the pressure and temperature dependence of each global reaction. In particular, the fall-off region of the OH addition reactions contributes to the inverse temperature dependence of the rate constants in the Arrhenius plots, leading to pressure-dependent negative activation energies. The pressure dependence of the methyl vinyl ketone+OH reaction is clearly more important than in the case of the methacrolein+OH reaction owing to the weight of the hydrogen abstraction process in this second system. Comparison of the theoretical rate constants and the experimental measurements shows quite good agreement.
进行了高水平的电子结构计算和主方程分析,以获得甲基乙烯基酮+OH和甲基丙烯醛+OH反应的压力和温度相关速率常数。在这些多阱和多通道系统中,高压极限下的OH加成反应、下降区的OH加成反应以及与压力无关的氢提取之间的平衡,已被证明对于理解每个全局反应的压力和温度依赖性至关重要。特别是,OH加成反应的下降区导致了阿累尼乌斯图中速率常数的逆温度依赖性,从而产生压力相关的负活化能。由于第二个系统中氢提取过程的权重,甲基乙烯基酮+OH反应的压力依赖性显然比甲基丙烯醛+OH反应更为重要。理论速率常数与实验测量值的比较显示出相当好的一致性。