State-to-state dynamics of the Cl(2P) + C2H6(ν5, ν1 = 0, 1) → HCl(v′, j′) + C2H5 hydrogen abstraction reactions

被引:0
|
作者
Jose C. Corchado
Moises G. Chamorro
Cipriano Rangel
Joaquin Espinosa-Garcia
机构
[1] Universidad de Extremadura,Departamento de Química Física, Instituto de Computación Científica Avanzada de Extremadura
来源
Theoretical Chemistry Accounts | 2019年 / 138卷
关键词
Vibrational excitation effects; Potential energy surface; Application of the NMA approach to large molecules; Comparison with experiment;
D O I
暂无
中图分类号
学科分类号
摘要
Using quasi-classical trajectory calculations on a recently developed full-dimensional potential energy surface, the effects of ethane reactant vibrational excitation, ν5 = 1, on the dynamics of the title reaction were analyzed. By analyzing the classical results from a quantum-mechanical point of view, we performed state-to-state calculations to show the influence of vibrational excitation on the vibrational populations of the two coproducts, as well as rotational distributions of the diatomic HCl(v′, j′) product. We found that excitation of the C2H6(ν5 = 1) mode by one quantum increases reactivity by 9% with respect to the ground-state reaction, where the ethyl radical coproduct receives an important internal energy, ~ 30% of the available energy, There are many populated vibrational states in the ethyl radical, although the population in each is very low, 1–5%. In fact, the most populated vibrational state, C2H5 ground state, presents a population of only ~ 10%. The HCl(v′ = 0, 1) product shows non-inverted vibrational populations, 88:12%, with relatively hot rotational distributions, and where the HCl(v′ = 1) product is forward-scattered. These theoretical results qualitatively reproduce the only experimental study by Zare et al., 20 years ago, taking into account that the authors themselves recognized that their results were not quantitative. In addition, we analyze two related issues: mode specificity and translational versus vibrational efficiency to promote reactivity, which have not been experimentally studied. We found that independent excitation of the ethane C–H stretching ν5 and ν1 modes, which differ by only 15 cm−1, shows similar dynamics behavior, which discards mode specificity. Finally, vibrational energy promotes reactivity only slightly more effectively than an equal amount of energy as translation. This result was rationalized by the sudden vector projection model for this “central” barrier reaction, to which Polanyi’s rules cannot be applied.
引用
收藏
相关论文
共 44 条
  • [1] State-to-state dynamics of the Cl(2P)+C2H6(5,1=0,1)HCl(v, j)+C2H5 hydrogen abstraction reactions
    Corchado, Jose C.
    Chamorro, Moises G.
    Rangel, Cipriano
    Espinosa-Garcia, Joaquin
    THEORETICAL CHEMISTRY ACCOUNTS, 2019, 138 (02)
  • [2] Quasi-Classical Trajectory Dynamics Study of the CI(2P) + C2H6 → HCl(v,j) + C2H5 Reaction. Comparison with Experiment
    Espinosa-Garcia, Joaquin
    Martinez-Nunez, Emilio
    Rangel, Cipriano
    JOURNAL OF PHYSICAL CHEMISTRY A, 2018, 122 (10) : 2626 - 2633
  • [3] Current Status of the X + C2H6 [X ≡ H, F(2P), Cl(2P), O(3P), OH] Hydrogen Abstraction Reactions: A Theoretical Review
    Espinosa-Garcia, Joaquin
    Rangel, Cipriano
    Corchado, Jose C.
    MOLECULES, 2022, 27 (12):
  • [4] F(2P) + C2H6 → HF + C2H5 kinetics study based on a new analytical potential energy surface
    Espinosa-Garcia, J.
    Corchado, J. C.
    Garcia-Chamorro, M.
    Rangel, C.
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2018, 20 (30) : 19860 - 19870
  • [5] QCT study of the vibrational and translational role in the H + C2H6(ν1, ν2, ν5, ν7, ν9 and ν10) reactions
    J. Espinosa-Garcia
    J. Calle-Cancho
    J. C. Corchado
    Theoretical Chemistry Accounts, 2019, 138
  • [6] QCT study of the vibrational and translational role in the H + C2H6(ν1, ν2, ν5, ν7, ν9 and ν10) reactions
    Espinosa-Garcia, J.
    Calle-Cancho, J.
    Corchado, J. C.
    THEORETICAL CHEMISTRY ACCOUNTS, 2019, 138 (10)
  • [7] Quantum instanton calculation of rate constants for the C2H6 + H → C2H5 + H2 reaction: anharmonicity and kinetic isotope effects
    Wang, Wenji
    Zhao, Yi
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2011, 13 (43) : 19362 - 19370
  • [8] The hydrogen abstraction reaction H + C2H6 → H2(v,j) + C2H5. Part I. A full-dimensional analytical potential energy surface based on ab initio calculations
    Espinosa-Garcia, Joaquin
    Garcia-Chamorro, Moises
    Corchado, Jose C.
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2019, 21 (24) : 13347 - 13355
  • [9] Calculations of the rate constants for the hydrogen abstraction reactions C2H3+CH4 → C2H4+CH3 and C2H3+C2H6 → C2H4+C2H5
    Liu, GX
    Li, ZS
    Xiao, JF
    Liu, JY
    Fu, Q
    Huang, XR
    Sun, CC
    Tang, AC
    CHEMPHYSCHEM, 2002, 3 (07) : 625 - +
  • [10] Theory Finally Agrees with Experiment for the Dynamics of the Cl + C2H6 Reaction
    Papp, Dora
    Tajti, Viktor
    Gyori, Tibor
    Czako, Gabor
    JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2020, 11 (12) : 4762 - 4767