Literature DB >> 17064191

Study of the C(3P) + OH(X2Pi) --> CO(X1Sigma(g)+) + H(2S) reaction: a fully global ab initio potential energy surface of the X2A' state.

Alexandre Zanchet1, Beatrice Bussery-Honvault, Pascal Honvault.   

Abstract

The C((3)P) + OH(X (2)Pi) --> CO(X (1)Sigma(g)(+)) + H((2)S) reaction has been investigated by ab initio electronic structure calculations of the X(2)A' state based on the multireference (MR) internally contracted single and double configuration interaction (SDCI) method plus Davidson correction (+Q) using Dunning aug-cc-pVQZ basis sets. In particular, the multireference space is taken to be a complete active space (CAS). Improvement over previously proposed potential energy surfaces for HCO/COH is obtained in the sense that present surface describes also the potential part where the CO interatomic distance is large. A large number of geometries (around 2000) have been calculated and analytically fitted using the reproducing kernel Hilbert space (RKHS) method of Ho and Rabitz both for the two-body and three-body terms following the many-body decomposition of the total electronic energies. Results show that the global reaction is highly exothermic ( approximately 6.4 eV) and barrierless (relative to the reactant channel), while five potential barriers are located on this surface. The three minima and five saddle points observed are characterized and found to be in good agreement with previous work. The three minima correspond to the formation of HCO and COH complexes and to the CO + H products, with the COH complex being a metastable minimum relative to the product channel. The five saddle points correspond to potential barriers for both the dissociation/formation of HCO and COH into/from CO + H, to barriers for the isomerization of HCO into COH and to barriers for the inversion of HCO and COH through their respective linear configuration.

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Year:  2006        PMID: 17064191     DOI: 10.1021/jp064352p

Source DB:  PubMed          Journal:  J Phys Chem A        ISSN: 1089-5639            Impact factor:   2.781


  3 in total

1.  Effect of collision energy on the reaction mechanism of C((3)P) + OH(X(2) Π) → CO(X(1) Σ(+)) + H((2)S).

Authors:  Yanru Huang
Journal:  J Mol Model       Date:  2015-04-02       Impact factor: 1.810

2.  Formation and Destruction of SiS in Space.

Authors:  Alexandre Zanchet; Octavio Roncero; Marcelino Agúndez; José Cernicharo
Journal:  Astrophys J       Date:  2018-07-20       Impact factor: 5.874

3.  An ab initio study of the ground and excited electronic states of the methyl radical.

Authors:  A Zanchet; L Bañares; M L Senent; A García-Vela
Journal:  Phys Chem Chem Phys       Date:  2016-12-07       Impact factor: 3.676

  3 in total

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