Hyperthermal Dynamics and Kinetics of the C(3P)+N2(X1? +g) ? CN(X2? +) + N(4S) Reaction

Lu, Dandan; Urzua-Leiva, Rodrigo; Denis-Alpizar, Otoniel; Guo, Hua

Abstract

The hyperthermal dynamics and kinetics of the title reaction, which plays an important role in hypersonic chemistry for atmospheric entry vehicles, are investigated using quasi-classical trajectory methods on a recently developed ground electronic state potential energy surface. The dynamics calculations indicated that the reaction follows a complex-forming mechanism, despite its large endoergicity. The calculated differential cross section is forward-backward symmetric, consistent with a long-lived reaction intermediate supported by the NCN potential well. The lifetime of the reaction complex is sufficiently long that the vibrational distribution of the CN product can be predicted by the phase space theory. The calculated vibrational state specific and thermal rate coefficients follow the Arrhenius behavior, and the agreement with existing low-temperature experimental thermal rate coefficients is satisfactory. Extrapolations to high temperatures relevant to hypersonic conditions are provided. © 2023 American Chemical Society.

Más información

Título según WOS: Hyperthermal Dynamics and Kinetics of the C(3P)+N2(X1? +g) ? CN(X2? +) + N(4S) Reaction
Título según SCOPUS: Hyperthermal Dynamics and Kinetics of the C(3P) + N2(X1Formula Presented) ? CN(X2Formula Presented) + N(4S) Reaction
Título de la Revista: Journal of Physical Chemistry A
Volumen: 127
Número: 12
Editorial: American Chemical Society
Fecha de publicación: 2023
Página de inicio: 2839
Página final: 2845
Idioma: English
DOI:

10.1021/acs.jpca.3c00210

Notas: ISI, SCOPUS