Sulfur and Phosphorus Oxyacid Radicals

We report a computational study of the little-studied neutral bisulfite, bisulfate, dihydro-phosphite, and dihydro-phosphate radicals (HSO x •, H2PO x •, x = 3,4), calling special attention to their various tautomeric structures together with pK a values estimated from the Gibbs free energies of the...

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Veröffentlicht in:The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, & general theory Molecules, spectroscopy, kinetics, environment, & general theory, 2022-02, Vol.126 (5), p.760-771
Hauptverfasser: Bühl, Michael, Hutson, Tallulah, Missio, Alice, Walton, John C
Format: Artikel
Sprache:eng
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Zusammenfassung:We report a computational study of the little-studied neutral bisulfite, bisulfate, dihydro-phosphite, and dihydro-phosphate radicals (HSO x •, H2PO x •, x = 3,4), calling special attention to their various tautomeric structures together with pK a values estimated from the Gibbs free energies of their dissociations (at the G4 and CAM-B3LYP levels of density functional theory). The energetics of microhydration clusters with up to four water molecules for the S-based species and up to eight water molecules for the P-based species were investigated. The number of microhydrating water molecules needed to induce spontaneous de-protonation is found to correlate the acid strength of each radical. According to the computed Gibbs free reaction and activation energies, S- and P-centered radicals preferentially add to the double bond of propene (a lipid model), whereas the O-centered radical tautomers prefer H-abstraction. The likely downstream reactions of these radicals in biological media are discussed.
ISSN:1089-5639
1520-5215
DOI:10.1021/acs.jpca.1c10455