Publication Type |
Journal Article |
School or College |
College of Science |
Department |
Chemistry |
Program |
Center for the Simulation of Accidental Fires and Explosions (C-SAFE) |
Creator |
Truong, Thanh |
Other Author |
Zhang, Shaowen |
Title |
Direct ab initio dynamics studies of N + H2<-->NH + H reaction |
Date |
2000 |
Description |
Kinetics of the N+H2<-->NH+H reaction have been studied using a direct ab initio dynamics method. Potential energy surface for low electronic states have been explored at the QCISD/ cc-pVDZ level of theory. We found the ground-state reaction is N(4S)+H2-->NH(3Σ-)+H. Thermal rate constants for this reaction were calculated using the microcanonical variational transition state theory. Reaction path information was calculated at the QCISD/cc-pVDZ level of theory. Energies along the minimum energy path (MEP) were then refined at the QCISD(TQ)/ cc-pVTZ level of theory. The forward and reverse barriers of the ground-state reaction are predicted to be 29.60 and 0.53 kcal/mol, respectively. The calculated rate constants for both forward and reverse reactions are in good agreement with available experimental data. They can be expressed as k(T)52.3331014 exp(230.83 (kcal/mol)/RT) cm3 mols-1 s-1 for the forward reaction and k(T) 55.553108T1.44 exp(20.78(kcal/mol)/RT) cm3 mol-1 s-1 for the reverse reaction in the temperature range 400-2500 K. |
Type |
Text |
Publisher |
American Institute of Physics (AIP) |
Journal Title |
The Journal of Chemical Physics |
Volume |
113 |
Issue |
15 |
First Page |
6149 |
Last Page |
6153 |
DOI |
10.1063/1.1308544 |
citatation_issn |
219606 |
Subject |
Ab initio dynamics; Potential energy surfaces; Minimum energy path; Ground-state reaction; Rate constants |
Subject LCSH |
Molecular dynamics; Nitrogen compounds; Chemical kinetics |
Language |
eng |
Bibliographic Citation |
Zhang, S., & Truong, T. (2000). Direct ab initio dynamics studies of N + H2<-->NH + H reaction. Journal of Chemical Physics, 113(15), 6149-53. |
Rights Management |
(c)American Institute of Physics. The following article appeared in Zhang, S., & Truong, T., Journal of Chemical Physics, 113(15), 2000 and may be found at http://dx.doi.org/10.1063/1.1308544 |
Format Medium |
application/pdf |
Format Extent |
70,923 bytes |
Identifier |
ir-main,7080 |
ARK |
ark:/87278/s64b3jv5 |
Setname |
ir_uspace |
ID |
706159 |
Reference URL |
https://collections.lib.utah.edu/ark:/87278/s64b3jv5 |