Insights into adsorption, diffusion, and reactions of atomic nitrogen on a highly oriented pyrolytic graphite surface

被引:5
|
作者
Wang, Yingqi [1 ]
Nieman, Reed [1 ]
Minton, Timothy K. [2 ]
Guo, Hua [1 ]
机构
[1] Univ New Mexico, Dept Chem & Chem Biol, Albuquerque, NM 87131 USA
[2] Univ Colorado, Ann & HJ Smead Dept Aerosp Engn Sci, Boulder, CO 80303 USA
来源
JOURNAL OF CHEMICAL PHYSICS | 2021年 / 154卷 / 07期
关键词
Graphite;
D O I
10.1063/5.0042298
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
To gain insight into the nitrogen-related gas-surface reaction dynamics on carbon-based thermal protection systems of hypersonic vehicles, we have investigated the adsorption, diffusion, and reactions of atomic nitrogen, N(S-4), on the (0001) face of graphite using periodic density functional theory with a dispersion corrected functional. The atomic nitrogen is found to bind with pristine graphite at a bridge site, with a barrier of 0.88 eV for diffusing to an adjacent bridge site. Its adsorption energy at defect sites is significantly higher, while that between graphene layers is lower. The formation of N-2 via Langmuir-Hinshelwood (LH) and Eley-Rideal (ER) mechanisms was also investigated. In the LH pathway, the recombinative desorption of N-2 proceeds via a transition state with a relatively low barrier (0.53 eV). In addition, there is a metastable surface species, which is capable of trapping the nascent N-2 at low surface temperatures as a result of the large energy disposal into the N-N vibration. The desorbed N-2 is highly excited in both of its translational and vibrational degrees of freedom. The ER reaction is direct and fast, and it also leads to translationally and internally excited N-2. Finally, the formation of CN from a defect site is calculated to be endoergic by 2.75 eV. These results are used to rationalize the results of recent molecular beam experiments.
引用
收藏
页数:11
相关论文
共 50 条
  • [41] Molecular dynamics simulation of complexation of asphaltenes on the surface of highly oriented pyrolytic graphite
    Li Y.
    Zhang Y.
    Liu X.
    Zhang C.
    Lu X.
    Shiyou Xuebao/Acta Petrolei Sinica, 2020, 41 (05): : 592 - 603
  • [42] Electrochemical STM Investigation of Oxidative Corrosion of the Surface of Highly Oriented Pyrolytic Graphite
    Matsumoto, Masashi
    Manako, Takashi
    Imai, Hideto
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2009, 156 (10) : B1208 - B1211
  • [43] The adsorption of n-dodecane and n-pentane onto highly oriented pyrolytic graphite studied by atomic force microscopy
    Martin, DS
    Weightman, P
    Gauntlett, JT
    SURFACE SCIENCE, 1999, 424 (2-3) : 187 - 198
  • [44] The adsorption of an n-hexadecane/benzoic acid solution onto highly oriented pyrolytic graphite studied by atomic force microscopy
    Martin, DS
    Weightman, P
    Gauntlett, JT
    SURFACE SCIENCE, 1999, 431 (1-3) : 138 - 145
  • [45] Adsorption of synthetic homo- and hetero-oligodeoxynucleotides onto highly oriented pyrolytic graphite: Atomic force microscopy characterization
    Chiorcea Paquim, Ana-Maria
    Oretskaya, Tatiana S.
    Oliveira Brett, Ana Maria
    BIOPHYSICAL CHEMISTRY, 2006, 121 (02) : 131 - 141
  • [46] Room-Temperature Interaction of Nitrogen Dioxide with Rhodium Nanoparticles Supported on the Surface of Highly Oriented Pyrolytic Graphite (HOPG)
    Smirnov, M. Yu
    Kalinkin, A., V
    Salanov, A. N.
    Sorokin, A. M.
    Bukhtiyarov, V., I
    KINETICS AND CATALYSIS, 2021, 62 (05) : 664 - 674
  • [47] Room-Temperature Interaction of Nitrogen Dioxide with Rhodium Nanoparticles Supported on the Surface of Highly Oriented Pyrolytic Graphite (HOPG)
    M. Yu. Smirnov
    A. V. Kalinkin
    A. N. Salanov
    A. M. Sorokin
    V. I. Bukhtiyarov
    Kinetics and Catalysis, 2021, 62 : 664 - 674
  • [48] Room Temperature Oxidation of the Surface of Highly Oriented Pyrolytic Graphite (HOPG) with Nitrogen Dioxide in the Presence of Supported Palladium Particles
    M. Yu. Smirnov
    A. V. Kalinkin
    A. M. Sorokin
    V. I. Bukhtiyarov
    Kinetics and Catalysis, 2020, 61 : 637 - 645
  • [49] Room Temperature Oxidation of the Surface of Highly Oriented Pyrolytic Graphite (HOPG) with Nitrogen Dioxide in the Presence of Supported Palladium Particles
    Smirnov, M. Yu.
    Kalinkin, A. V.
    Sorokin, A. M.
    Bukhtiyarov, V. I.
    KINETICS AND CATALYSIS, 2020, 61 (04) : 637 - 645
  • [50] Surface-induced fragmentation of tin cluster ions on a highly oriented pyrolytic graphite surface
    Tai, Y
    Murakami, J
    CHEMICAL PHYSICS LETTERS, 2001, 339 (1-2) : 9 - 13