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Measurement of Ultrafast Vibrational Coherences in Polyatomic Radical Cations with Strong-Field Adiabatic Ionization
Published on: August 6, 2018
Ultrafast Photodissociation and Recombination Dynamics of Methyl p‑Tolyl Sulfoxide in Solution: Insights from
Alessandra Paladini1, Patrick O'Keeffe1, Francesco Toschi2
1CNR-Istituto di Struttura della Materia (CNR-ISM), EuroFEL Support Laboratory (EFSL), Via Salaria km 29,300, 00015 Monterotondo Scalo, RM, Italy.
Abstract:
When molecular fragmentation takes place in solution, solute-solvent interactions introduce additional pathways for radical recombination and secondary chemical transformations, adding complexity to the photodissociation dynamics in comparison to the dynamics observed in isolated systems. In this study, we investigate the ultrafast photodynamics of methyl p-tolyl sulfoxide (Metoso) in the 1-300 ps time range in dimethyl sulfoxide and ethanol solutions using ultrafast transient absorption spectroscopy. Density functional theory calculations have assisted in the interpretation of the experimental data. Upon UV irradiation, Metoso undergoes homolytic cleavage of one of the sulfur-carbon (S-CH3) bonds, leading to the formation of methyl and para tolylsulfinyl radicals. We explore the competition between geminate recombination, diffusional separation, and alternative reaction pathways. Our results provide insights into the early-stage photochemistry of alkyl-aryl sulfoxides, highlighting the role of solvent interactions influencing radical lifetimes, recombination, and reaction dynamics. These findings contribute to a deeper understanding of sulfoxide photoreactivity, which is relevant to medicinal chemistry and organic synthesis.
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