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Título
Photofragmentation of cyclobutanone at 200 nm: TDDFT vs CASSCF electron diffraction
Autor(es)
Palabras clave
Photofragmentation
Cyclobutanone
Gas-phase ultrafast electron diffraction (GUED)
Non-adiabatic dynamics
Tully surface hopping
Fecha de publicación
2024
Editor
AIP Publishing
Citación
Martín Santa Daría, A., Hernández-Rodríguez, J., Ibele, L. M., & Gómez, S. (2024). Photofragmentation of cyclobutanone at 200 nm: TDDFT vs CASSCF electron diffraction. Journal of Chemical Physics, 160(11). https://doi.org/10.1063/5.0197895
Resumen
[EN]To simulate a 200 nm photoexcitation in cyclobutanone to the n-3s Rydberg state, classical trajectories were excited from a Wigner distribution to the singlet state manifold based on excitation energies and oscillator strenghts. Twelve singlet and twelve triplet states are treated using TD-B3LYP-D3/6-31+G∗∗for the electronic structure and the nuclei are propagated with the Tully Surface Hopping method. Using TD-DFT, we are able to predict the bond cleavage that takes place on the S1 surface as well as the ultrafast deactivation from the Rydberg n-3s state to the nπ∗. After showing that triplet states and higher-lying singlet states do not play any crucial role during the early dynamics (i.e., the first 300 fs), the SA(6)-CASSCF(8,11)/aug-cc-pVDZ method is used as an electronic structure and the outcome of the non-adiabatic dynamic simulations is recomputed. Gas-phase ultrafast electron diffraction (GUED) spectra are computed for both electronic structure methods, showing significantly different results.
URI
ISSN
0021-9606
DOI
10.1063/5.0197895
Versión del editor
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- GIDM. Artículos [73]













