首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >DFT and ab initio calculations on two reactions between hydrogen atoms and the fire suppressants 2-H heptafluoropropane and CF3Br
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DFT and ab initio calculations on two reactions between hydrogen atoms and the fire suppressants 2-H heptafluoropropane and CF3Br

机译:氢原子与灭火剂2-H七氟丙烷和CF3Br之间两个反应的DFT和从头算

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Reaction enthalpies and barrier heights of the reactions CF3Br + H -> CF3 + HBr {reaction (1)} and CF3CHFCF3 + H -> CF3CFCF3 + H-2 {reaction (2)} have been calculated at the near state-of-the-art ab initio level, and also by employing the B3LYP, BH&HLYP, BB1K, MPW1K, MPWB1K and TPSS1KCIS functionals. In addition, the integrated molecular orbital + molecular orbital (IMOMO) method has been used to study reaction (2). The ab initio benchmark values of the reaction enthalpy (298 K) and barrier height (0 K) of reaction (2) are reported for the first time {-(0.7 +/- 0.7) and 13.3 +/- 0.5 kcal/mole respectively}. When density functional theory (DFT) results are compared with ab initio benchmarks for both reactions (1) and (2), the MPWB1K functional is found to have the best performance of the six functionals used. The IMOMO method with the RCCSD/aug-cc-pVTZ and/or RCCSD(T)/aug-cc-pVTZ levels, as the high levels of calculation on the model system, gives reaction enthalpies and barrier heights of reaction (2), which agree with ab initio benchmark values to within 1 kcal/mole. Computed key geometrical parameters and imaginary vibrational frequencies of the transition state structures of reactions (1) and (2) obtained at different levels of calculation are compared. The magnitudes of the computed imaginary vibrational frequencies of the transition states of both reactions considered are found to be very sensitive to the levels of calculation used to obtain them. The heat of formation (298 K) of CF3CFCF3 calculated at the near state-of-the-art level has a value of -(318 +/- 3) kcal/mole. (C) 2007 Wiley Periodicals, Inc.
机译:反应CF3Br + H-> CF3 + HBr {反应(1)}和CF3CHFCF3 + H-> CF3CFCF3 + H-2 {反应(2)}的反应焓和势垒高度已在接近-从头开始,也可以通过采用B3LYP,BH&HLYP,BB1K,MPW1K,MPWB1K和TPSS1KCIS功能来实现。另外,已经使用积分分子轨道+分子轨道(IMOMO)方法研究反应(2)。首次报告了反应焓(298 K)和反应(2)的势垒高度(0 K)的从头算基准值{-(0.7 +/- 0.7)和13.3 +/- 0.5 kcal / mole }。当将密度泛函理论(DFT)的结果与反应(1)和(2)的从头算基准进行比较时,发现MPWB1K官能团在所使用的六个官能团中具有最佳性能。 IMOMO方法使用RCCSD / aug-cc-pVTZ和/或RCCSD(T)/ aug-cc-pVTZ水平,作为模型系统的高级计算,给出了反应焓和反应势垒高度(2),从头算基准值在1 kcal / mole以内。比较了在不同计算级别获得的反应(1)和(2)的过渡态结构的计算出的关键几何参数和虚拟振动频率。发现所考虑的两个反应的过渡态的计算的假想振动频率的大小对用于获得它们的计算水平非常敏感。以接近最新水平计算的CF3CFCF3的形成热(298 K)值为-(318 +/- 3)kcal / mole。 (C)2007 Wiley期刊公司

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