Acta Chimica Sinica ›› 2010, Vol. 68 ›› Issue (18): 1787-1792. Previous Articles     Next Articles

Special Topic

氟氯酰与丙烷反应的密度泛函理论研究

牛莉博*,1,2,刘志勇2,王少龙2,罗永锋2,孙新利1   

  1. (1第二炮兵工程学院 西安 710025)
    (2第二炮兵装备研究院二所 北京 100085)
  • 投稿日期:2010-01-31 修回日期:2010-04-11 发布日期:2010-05-11
  • 通讯作者: 牛莉博 E-mail:niulibo_1986@163.com

Theoretical Study on the Reaction of Chlorine Trifluoride Oxide with Propane by Density Functional Theory

Niu Libo*,1,2 Liu Zhiyong2 Wang Shaolong2 Luo Yongfeng2 Sun Xinli1   

  1. (1 The Second Artillery Engineering College, Xi an 710025)
    (2 The Second Institute of the Second Artillery Equipment Academe, Beijing 100085)
  • Received:2010-01-31 Revised:2010-04-11 Published:2010-05-11
  • Contact: NIU Libo E-mail:niulibo_1986@163.com

Using the density functional theory (DFT), the reaction mechanism of ClF3O and C3H8 to produce propane radical or propane was studied. At B3PW91/6-311++G(d,p) level, the geometries of all species (reactants, intermediates, transition states and products) of 9 different reaction paths were optimized and the vibration frequencies as well as zero point vibration energies (ZPVE) were also calculated. The activation energies of the reactions were calculated with the results of ZPVE, and the reaction constants, using transition state theory, at room temperature and standard concentration were also calculated. The calculated results suggest that the reaction of ClF3O and C3H8 can produce C3H7 radical, HF and C1F2O or produce C3H7OH and ClF3 through different paths. The main path of the reaction is ClF3O+C3H8→TS4→M2+ HF+ClF2O with the activation energy only 7.54 kJ/mol and reaction constant k4=0.153×106 mol-1•dm3•s-1.

Key words: chlorine trifluoride oxide, propane, density functional theory, reaction mechanism