Jarraya Mahmoud, Wallner Måns, Ben Yaghlane Saida, Olsson Emelie, Ideböhn Veronica, Squibb Richard J, Palaudoux Jérôme, Nyman Gunnar, Al-Mogren Muneerah Mogren, Eland John H D, Feifel Raimund, Hochlaf Majdi
Université Gustave Eiffel, COSYS/IMSE, 5 Bd Descartes, 77454, Champs Sur Marne, France.
LSAMA, Faculté des Sciences de Tunis, Université de Tunis El Manar, Tunis, 2092, Tunisia.
Phys Chem Chem Phys. 2023 Jul 26;25(29):19435-19445. doi: 10.1039/d3cp01688a.
The dissociation of OCS ions formed by photoionization of the neutral molecule at 40.81 eV is examined using threefold and fourfold electron-ion coincidence spectroscopy combined with high level quantum chemical calculations on isomeric structures and their potential energy surfaces. The dominant dissociation channel of [OCS] is charge separation forming CO + S ion pairs, found here to be formed with low intensity at a lower-energy onset and with a correspondingly smaller kinetic energy release than in the more intense higher energy channel previously reported. We explain the formation of CO + S ion pairs at low as well as higher ionization energies by the existence of two predissociation channels, one involving a newly identified COS metastable state. We conclude that the dominant CO + S channel with 5.2 eV kinetic energy release is reached upon OCS → COS isomerization, whereas the smaller kinetic energy release (of ∼4 eV) results from the direct fragmentation of OCS (XΣ) ions. Dissociation of the COS isomer also explains the existence of the minor C + SO ion pair channel. We suggest that isomerization prior to dissociation may be a widespread mechanism in dications and more generally in multiply charged ion dissociations.