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A theoretical invetigation on the mechanism and kinetics for the reaction of atomic O(~3P) with CH_3CHCl_2

机译:O(〜3P)原子与CH_3 Ch_2反应机理和动力学的理论研究

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The reaction of atomic O9~3P) with CH_3CHCl_2 has been studied theoretically using ab initio directg dynamics methods for the first time.This reaction involves two channels:H abstraction from the methyl group (CH_3),and H abstraction from the methyne group (CH).Two nearly degenerate saddle points of ~3A" and ~3A' symmetries have been located for each hydrogen abstraction channel.At the QCISD(T)/6-311+G(3df,2p)//MP2/6-311G(d,p) level,the potential barrier of H abstraction from the CH_3 group is higher about 6 kcal/mol than that of H abstraction from the CH group.Changes of geometries,generalized normal-mode vibrational frequencies,and potential jenergies along the reaction paths for all the channels are discussed and compared.On the basis of the ab initio data,the rate constants of each channel have been deduced by canonical variational transition state theory with small-curvature tunneling correction method over a wide temperatures range of 200-3000 K.The theortical results have been compared with available experimental data.The kinetics calculations show that the variational effect is small and in the low temperature range (200-800 K),the small curvature tunneling contribution is impo9rtant for allo the channels.The detailed branching ratios have been discussed.
机译:理论上首次使用从头算动力学方法研究了O9〜3P)原子与CH_3CHCl_2的反应,该反应涉及两个通道:从甲基(CH_3)提取H和从亚甲基(CH)提取H. )。对于每个氢提取通道,已经找到了〜3A“和〜3A'对称性的几乎简并的鞍点。在QCISD(T)/ 6-311 + G(3df,2p)// MP2 / 6-311G( d,p)级,从CH_3基团提取H的势垒比从CH基团提取H的势垒高约6 kcal / mol。几何形状的变化,一般的正模振动频率以及沿着反应的势能讨论并比较了所有通道的路径。基于从头算数据,采用典型的变分过渡态理论,采用小曲率隧道校正方法,在200-3000的宽温度范围内推导了每个通道的速率常数。 K.理论结果是动力学计算表明,变化影响很小,在低温范围(200-800 K)下,较小的曲率隧穿贡献对所有通道均无重要作用。详细讨论了分支比。

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