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CHnF4-n与O3吸氢反应途径和速率常数计算

杨静1,3, 张绍文1, 李前树1,2   

    1. 北京理工大学物理化学研究所, 北京 100081;
    2. 华南师范大学化学与环境学院, 广州 510006;
    3. 唐山师范学院化学系, 唐山 063000
  • 收稿日期:2007-04-20 修回日期:1900-01-01 出版日期:2007-10-10 发布日期:2007-10-10
  • 通讯作者: 李前树

Reaction Path Dynamics and Theoretical Rate Constants Calculation for CHnF4-n+O3→HOOO+CHn-1F4-n(n=2,3) Reactions

YANG Jing1,3, ZHANG Shao-Wen1, LI Qian-Shu1,2*   

    1. Institute for Physical Chemistry, Beijing Institute of Technology, Beijing 100081, China;
    2. School of Chemistry and Environment, South China Normal University, Guangzhou 510006, China;
    3. Department of Chemistry, Tangshan Teacher's College, Tangshan 063000, China
  • Received:2007-04-20 Revised:1900-01-01 Online:2007-10-10 Published:2007-10-10
  • Contact: LI Qian-Shu

摘要: 用量子化学方法, 从理论上探讨了CHnF4-n(n=2,3)与臭氧反应的微观机理, 并计算了各反应在不同温度下的速率常数.

关键词: 臭氧, 氟代甲烷, 速率常数, 密度泛函理论

Abstract: The hydrogen abstraction reactions by ozone from fluoromethanes(CH3F, CH2F2) are the most suitable processes for modeling and testing methodologies that could be applied to larger molecules or to the complete reaction kinetic schemes for the degradation of HFCs. We presented a theoretical study of the hydrogen abstraction reactions from CH3F and CH2F2 by ozone molecule. The geometries, harmonic vibrational frequencies of all stationary points were calculated at MPW1K level of the theory. The energies of all the stationary points were refined by using higher-level(denoted as HL) energy calculations. The minimum energy paths(MEPs) were obtained by the MPW1K/6-31+G(d,p) level. Energetic information of the points along the MEPs is further refined by HL method. The rate constants were evaluated on the basis of the MEPs from the HL level of theory in the temperature range of 200—2500 K with the conventional transition state theory(TST), the canonical variational transition state theory(CVT) and the microcanonical variational transition state theory(μVT) based on the ab initio calculations. A general agreement was found among the TST, CVT, and μVT theories. The fitted three-parameter Arrhenius expressions of the calculated forward CVT/SCT, and μVT/Eckart rate constants of the ozonolysis of fluoromethane are kCVT/SCT(T)=2.76×10-34T5.81 e(-13975/T) and kμVT/Eckart(T)=1.15×10-34T5.97 e(-14530.7/T), respectively. The fitted three-parameter Arrhenius expressions of the calculated forward CVT/SCT, and μVT/Eckart rate constants of the ozonolysis of difluoromethane are kCVT/SCT(T)=2.29×10-36T6.42 e(-15451.6/T) and kμVT/Eckart(T)=1.31×10-36T6.45 e(-15465.8/T), respectively.

Key words: Ozone, Fluoromethane, Rate constant, Density function theory(DFT)

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