Literature DB >> 24329062

A new ab initio potential energy surface for the collisional excitation of HCN by para- and ortho-H2.

Otoniel Denis-Alpizar1, Yulia Kalugina2, Thierry Stoecklin1, Mario Hernández Vera2, François Lique3.   

Abstract

We present a new four-dimensional potential energy surface for the collisional excitation of HCN by H2. Ab initio calculations of the HCN-H2 van der Waals complex, considering both molecules as rigid rotors, were carried out at the explicitly correlated coupled cluster with single, double, and perturbative triple excitations [CCSD(T)-F12a] level of theory using an augmented correlation-consistent triple zeta (aVTZ) basis set. The equilibrium structure is linear HCN-H2 with the nitrogen pointing towards H2 at an intermolecular separation of 7.20 a0. The corresponding well depth is -195.20 cm(-1). A secondary minimum of -183.59 cm(-1) was found for a T-shape configuration with the H of HCN pointing to the center of mass of H2. We also determine the rovibrational energy levels of the HCN-para-H2 and HCN-ortho-H2 complexes. The calculated dissociation energies for the para and ortho complexes are 37.79 cm(-1) and 60.26 cm(-1), respectively. The calculated ro-vibrational transitions in the HCN-H2 complex are found to agree by more than 0.5% with the available experimental data, confirming the accuracy of the potential energy surface.

Entities:  

Year:  2013        PMID: 24329062     DOI: 10.1063/1.4833676

Source DB:  PubMed          Journal:  J Chem Phys        ISSN: 0021-9606            Impact factor:   3.488


  1 in total

1.  Collisional excitation of HNC by He found to be stronger than for structural isomer HCN in experiments at the low temperatures of interstellar space.

Authors:  Brian M Hays; Divita Gupta; Théo Guillaume; Omar Abdelkader Khedaoui; Ilsa R Cooke; Franck Thibault; François Lique; Ian R Sims
Journal:  Nat Chem       Date:  2022-05-05       Impact factor: 24.427

  1 in total

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