da Silva Gabriel, Bozzelli Joseph W
Department of Chemical and Biomolecular Engineering, The University of Melbourne, Victoria 3010, Australia.
J Phys Chem A. 2009 Jun 25;113(25):6979-86. doi: 10.1021/jp902458d.
The kinetics of benzoxyl radical decomposition was studied using ab initio computational chemistry and RRKM rate theory. The benzoxyl radical is an important but short-lived intermediate in the combustion of toluene and other alkylated aromatic hydrocarbons. A theoretical study of the thermochemistry and kinetics to products over a range of temperatures and pressures for benzoxyl decomposition is reported. Ab initio calculations with the G3X theoretical method reveal low-energy pathways from the benzoxyl radical to benzaldehyde + H and the phenyl radical + formaldehyde (CH(2)O), as well as a novel mechanism to benzene + the formyl radical (HC()O). RRKM simulations were performed for benzoxyl decomposition as a function of temperature and pressure. Benzaldehyde formation constitutes more than 80% of the total reaction products at temperatures below 1000 K, decreasing to around 50% at 2000 K. Formation of benzene + HC()O and phenyl + CH(2)O is of similar importance, each accounting for 5-10% of the decomposition products at around 1000 K, increasing to 20-30% at 2000 K. The results presented here should lead to improved kinetic models for the oxidation of alkylated aromatic hydrocarbons, particularly for the formation of benzene as a direct oxidation product of toluene. Re-evaluation of the phenyl radical heat of formation leads us to suggest a benzene C-H bond dissociation energy in the range of 113.5-114.5 kcal mol(-1).
利用从头算计算化学和RRKM速率理论研究了苯氧基自由基分解的动力学。苯氧基自由基是甲苯和其他烷基化芳烃燃烧过程中一种重要但寿命短暂的中间体。本文报道了在一系列温度和压力下对苯氧基分解产物的热化学和动力学的理论研究。采用G3X理论方法进行的从头算计算揭示了从苯氧基自由基到苯甲醛+H以及苯基自由基+甲醛(CH(2)O)的低能量路径,以及一种生成苯+甲酰基自由基(HC()O)的新机制。对苯氧基分解进行了RRKM模拟,作为温度和压力的函数。在低于1000 K的温度下,苯甲醛的形成占总反应产物的80%以上,在2000 K时降至约50%。苯+HC()O和苯基+CH(2)O的形成具有相似的重要性,在约1000 K时各占分解产物的5-10%,在2000 K时增至20-30%。本文给出的结果应有助于改进烷基化芳烃氧化的动力学模型,特别是对于甲苯直接氧化生成苯的过程。对苯基自由基生成热的重新评估使我们建议苯C-H键离解能在113.5-114.5 kcal mol(-1)范围内。