Compartir
Título
A Ring Polymer Molecular Dynamics Approach to Study the Transition between Statistical and Direct Mechanisms in the H2 + H3+ → H3+ + H2 Reaction
Autor(es)
Palabras clave
Chemical reaction rates
Selection rules
Deuterium fractionation
Interstellar molecules
Rate coefficients
Fecha de publicación
2018
Editor
ACS Publications
Citación
A Ring Polymer Molecular Dynamics Approach to Study the Transition between Statistical and Direct Mechanisms in the H2 + H3+ → H3+ + H2 Reaction Yury V. Suleimanov, Alfredo Aguado, Susana Gómez-Carrasco, and Octavio Roncero The Journal of Physical Chemistry Letters 2018 9 (9), 2133-2137 DOI: 10.1021/acs.jpclett.8b00783
Resumen
[EN]Because of its fundamental importance in astrochemistry, the H-2 + H-3(+) -> H-3(+) + H-2 reaction has been studied experimentally in a wide temperature range. Theoretical studies of the title reaction significantly lag primarily because of the challenges associated with the proper treatment of the zero-point energy (ZPE). As a result, all previous theoretical estimates for the ratio between a direct proton-hop and indirect exchange (via the H-5(+) complex) channels deviate from the experiment, in particular, at lower temperatures where the quantum effects dominate. In this work, the ring polymer molecular dynamics (RPMD) method is applied to study this reaction, providing very good agreement with the experiment. RPMD is immune to the shortcomings associated with the ZPE leakage and is able to describe the transition from direct to indirect mechanisms below room temperature. We argue that RPMD represents a useful tool for further studies of numerous ZPE-sensitive chemical reactions that are of high interest in astrochemistry.
URI
ISSN
1948-7185
DOI
10.1021/acs.jpclett.8b00783
Versión del editor
Aparece en las colecciones
- GIDM. Artículos [73]













