Tracking the ultraviolet-induced photochemistry of thiophenone during and after ultrafast ring opening

التفاصيل البيبلوغرافية
العنوان: Tracking the ultraviolet-induced photochemistry of thiophenone during and after ultrafast ring opening
المؤلفون: Pathak, S., Ibele, L. M., Boll, R., Callegari, C., Demidovich, A., Erk, B., Feifel, Raimund, Forbes, R., Di Fraia, M., Giannessi, L., Hansen, C. S., Holland, D. M. P., Ingle, R. A., Mason, R., Plekan, O., Prince, K. C., Rouzee, A., Squibb, Richard J., Tross, J., Ashfold, M. N. R., Curchod, B. F. E., Rolles, D.
المصدر: Nature Chemistry. 12(9):795-800
مصطلحات موضوعية: Atom and Molecular Physics and Optics, Atom- och molekylfysik och optik
الوصف: Photoinduced isomerization reactions lie at the heart of many chemical processes in nature. The mechanisms of such reactions are determined by a delicate interplay of coupled electronic and nuclear dynamics occurring on the femtosecond scale, followed by the slower redistribution of energy into different vibrational degrees of freedom. Here we apply time-resolved photoelectron spectroscopy with a seeded extreme ultraviolet free-electron laser to trace the ultrafast ring opening of gas-phase thiophenone molecules following ultraviolet photoexcitation. When combined with ab initio electronic structure and molecular dynamics calculations of the excited- and ground-state molecules, the results provide insights into both the electronic and nuclear dynamics of this fundamental class of reactions. The initial ring opening and non-adiabatic coupling to the electronic ground state are shown to be driven by ballistic S-C bond extension and to be complete within 350 fs. Theory and experiment also enable visualization of the rich ground-state dynamics that involve the formation of, and interconversion between, ring-opened isomers and the cyclic structure, as well as fragmentation over much longer timescales.
وصف الملف: electronic
URL الوصول: https://gup.ub.gu.se/publication/295472
قاعدة البيانات: SwePub
الوصف
تدمد:17554330
DOI:10.1038/s41557-020-0507-3