Wu Junjun, Khaled Fethi, Ning Hongbo, Ma Liuhao, Farooq Aamir, Ren Wei
Clean Combustion Research Center, Physical Sciences and Engineering Division, King Abdullah University of Science and Technology (KAUST) , Thuwal 23955, Saudi Arabia.
J Phys Chem A. 2017 Aug 24;121(33):6304-6313. doi: 10.1021/acs.jpca.7b06119. Epub 2017 Aug 14.
We report a systematic chemical kinetics study of the H atom abstractions from ethyl formate (EF) by H, O(P), CH, OH, and HO radicals. The geometry optimization and frequency calculation of all the species were conducted using the M06 method and the cc-pVTZ basis set. The one-dimensional hindered rotor treatment of the reactants and transition states and the intrinsic reaction coordinate analysis were also performed at the M06/cc-pVTZ level of theory. The relative electronic energies were calculated at the CCSD(T)/cc-pVXZ (where X = D, T) level of theory and further extrapolated to the complete basis set limit. Rate constants for the tittle reactions were calculated over the temperature range 500-2500 K by the transition state theory (TST) in conjunction with the asymmetric Eckart tunneling effect. In addition, the rate constants of H-abstraction by hydroxyl radical were measured in shock tube experiments at 900-1321 K and 1.4-2.0 atm. Our theoretical rate constants of OH + EF → products agree well with the experimental results within 15% over the experimental temperature range of 900-1321 K. Branching ratios for the five types of H-abstraction reactions were also determined from their individual site-specific rate constants.
我们报告了一项关于H、O(P)、CH、OH和HO自由基从甲酸乙酯(EF)中夺取氢原子的系统化学动力学研究。使用M06方法和cc-pVTZ基组对所有物种进行了几何优化和频率计算。还在M06/cc-pVTZ理论水平上对反应物和过渡态进行了一维受阻转子处理以及内禀反应坐标分析。相对电子能量在CCSD(T)/cc-pVXZ(其中X = D、T)理论水平上进行计算,并进一步外推到完整基组极限。通过过渡态理论(TST)结合不对称埃卡特隧穿效应,在500 - 2500 K的温度范围内计算了上述反应的速率常数。此外,在900 - 1321 K和1.4 - 2.0 atm的激波管实验中测量了羟基自由基夺取氢原子的速率常数。在900 - 1321 K的实验温度范围内,我们计算得到的OH + EF → 产物的理论速率常数与实验结果吻合良好,误差在15%以内。还根据各自特定位置的速率常数确定了五种类型的氢原子夺取反应的分支比。