Please use this identifier to cite or link to this item: https://hdl.handle.net/2445/216980
Title: Potential energy surfaces for singlet and triplet states of the LiH2+ system and quasi-classical trajectory cross sections for H + LiH+ and H+ + LiH
Author: Hernández-Rodríguez, Javier
Sanz-Sanz, Cristina
Enríquez, Pedro Alberto
González Pérez, Miguel
Paniagua, Miguel
Keywords: Dinàmica molecular
Liti
Química de superfícies
Molecular dynamics
Lithium
Surface chemistry
Issue Date: 16-Oct-2023
Publisher: Royal Society of Chemistry
Abstract: A new set of six accurate ab initio potential energy surfaces (PESs) is presented for the first three singlet and triplet states of LiH2+ (1,21A′, 11A′′, 1,23A′, and 13A′′ states, where four of them are investigated for the first time), which have allowed new detailed studies gaining a global view on this interesting system. These states are relevant for the study of the most important reactions of lithium chemistry in the early universe. More than 45 000 energy points were calculated using the multi-reference configuration interaction level of theory using explicitly correlated methods (ic-MRCI-F12), and the results obtained for each individual electronic state were fitted to an analytical function. Using quasiclassical trajectories and considering the initial diatomic fragment in the ground rovibrational state, we have determined the integral cross sections for the H + LiH+(X2Σ+, C2Π) and H+ + LiH(X1Σ+, B1Π) reactions. In these calculations all available reaction channels were considered: the chemically most important H or H+ transfer/abstraction as well as atom exchange and collision induced dissociation for up to 1.0 eV of collision energy.
Note: Reproducció del document publicat a: https://doi.org/10.1039/d3cp02959j
It is part of: Physical Chemistry Chemical Physics, 2023, vol. 25, p. 28052-28062
URI: https://hdl.handle.net/2445/216980
Related resource: https://doi.org/10.1039/d3cp02959j
ISSN: 1463-9076
Appears in Collections:Articles publicats en revistes (Ciència dels Materials i Química Física)

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