Kinetic and dynamic studies of the NH2+ + H2 reaction on a high-level ab initio potential energy surface

被引:2
|
作者
Zhu, Yongfa [1 ]
Li, Rui [1 ]
Song, Hongwei [2 ]
机构
[1] Hubei Polytech Univ, Sch Chem & Chem Engn, Huangshi 435003, Hubei, Peoples R China
[2] Chinese Acad Sci, Innovat Acad Precis Measurement Sci & Technol, Wuhan Inst Phys & Math, State Key Lab Magnet Resonance & Atom & Mol Phys, Wuhan 430071, Peoples R China
基金
中国国家自然科学基金;
关键词
POTENTIAL-ENERGY SURFACE; MOLECULES; IONS; NETWORKS; AMMONIA;
D O I
10.1039/d2cp03859e
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Gas-phase ion-molecule reactions have attracted considerable attention due to their importance in the fields of interstellar chemistry, plasma chemistry, and combustion chemistry. The reaction of an amino radical cation with a hydrogen molecule is one of the crucial steps in the gas-phase formation of ammonia in the interstellar medium (ISM). The dynamics and kinetics of the NH2+ + H-2 reaction are studied using the quasi-classical trajectory approach on a newly constructed ab initio potential energy surface (PES) for the ground electronic state. The PES is fitted by the fundamental invariant-neural network method, resulting in a total root mean square error (RMSE) of 0.061 kcal mol(-1). Dynamics calculations show that, on one hand, the vibrational excitation of H-2 largely promotes the reaction. On the other hand, the fundamental excitation of each vibrational mode of NH2+ inhibits the reaction at low collision energies which has a negligible effect at high collision energies except for the symmetric stretching mode. The relatively higher efficacy of the symmetric stretching mode than that of the asymmetric stretching mode can be rationalized by the underlying reaction mechanisms. In addition, the calculated rate coefficients of the reaction agree reasonably well with the available experimental results.
引用
收藏
页码:25663 / 25672
页数:10
相关论文
共 50 条
  • [1] Kinetic and dynamic studies of the H3+ + CO → H2 + HCO+/HOC+ reaction on a high-level ab initio potential energy surface
    Zhu, Yongfa
    Tian, Li
    Song, Hongwei
    Yang, Minghui
    JOURNAL OF CHEMICAL PHYSICS, 2019, 151 (05)
  • [2] Ab initio based potential energy surface and kinetic studies of the H + HCF3 reaction
    Ding, Xiaokang
    Xiang, Ziliang
    Li, Qingling
    Zhu, Yongfa
    CHEMICAL PHYSICS, 2024, 580
  • [3] Ab initio MO study of potential energy surface of NH2 with CN reaction
    Du, B
    Zhang, WC
    INTERNATIONAL JOURNAL OF QUANTUM CHEMISTRY, 2006, 106 (08) : 1827 - 1843
  • [4] Ab initio studies of the C2H2BN potential energy surface
    Xu, HY
    Saebo, S
    Pittman, CU
    JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM, 2003, 621 (03): : 189 - 209
  • [5] Ab Initio Neural Network Potential Energy Surface and Quantum Dynamics Calculations on Na(2S) + H2 → NaH plus H Reaction
    Liu, Siwen
    Cheng, Huiying
    Cao, Furong
    Sun, Jingchang
    Yang, Zijiang
    MOLECULES, 2024, 29 (20):
  • [6] New ab initio potential energy surface and quantum dynamics of the reaction H(2S) + NH(X3Σ-) → N(4S) + H2
    Zhai, Hong-Sheng
    Han, Ke-Li
    JOURNAL OF CHEMICAL PHYSICS, 2011, 135 (10)
  • [7] An ab initio potential energy surface for the C2H2-N2 system
    Thibault, Franck
    Vieuxmaire, Olivier
    Sizun, Thibaut
    Bussery-Honvault, Beatrice
    MOLECULAR PHYSICS, 2012, 110 (21-22) : 2761 - 2771
  • [8] Potential Energy Surface for Interactions Between H2 and Si: Ab Initio Calculations and Analytic Fits
    Wang Yue
    Gao Gan
    Applied Magnetic Resonance, 2015, 46 : 661 - 669
  • [9] The H2NO potential energy surface explored with high level ab initio and density functional theory methods
    Jalbout, Abraham F.
    JOURNAL OF THEORETICAL & COMPUTATIONAL CHEMISTRY, 2007, 6 (03) : 549 - 562
  • [10] Full-dimensional quantum dynamics study of the H2 + C2H → H + C2H2 reaction on an ab initio potential energy surface
    Chen, Liuyang
    Shao, Kejie
    Chen, Jun
    Yang, Minghui
    Zhang, Dong H.
    JOURNAL OF CHEMICAL PHYSICS, 2016, 144 (19)