Utilize este identificador para referenciar este registo: http://hdl.handle.net/10362/185314
Título: Non-adiabatic photodissociation dynamics of vinyl iodide from nσ* and nπ* transitions
Autor: Murillo-Sánchez, Marta L.
Poullain, Sonia Marggi
Limão-Vieira, Paulo
Zanchet, Alexandre
Oliveira, Nelson de
González-Vázquez, Jesús
Bañares, Luis
Data: 26-Mar-2025
Resumo: The photodissociation dynamics of vinyl iodide upon photoexcitation at 199.2 and 200 nm are investigated in a joint theoretical and experimental study. The gas-phase absorption spectrum measured by Fourier transform spectroscopy along with the use of synchrotron radiation is reported and a reassignment of the excited electronic states responsible for the absorption at the energy range of interest is proposed. Femtosecond time-resolved velocity map imaging in conjunction with resonance enhanced multiphoton ionization detection of the I(2P3/2) and I*(2P1/2) photofragments have been carried out. The experimental results are discussed in view of high-level ab initio calculations including potential energy curves and semiclassical dynamics. Three conical intersections (CIs) governing the dynamics are identified in a search for stationary points using spin-orbit gradients. Based on these results, a complete picture of the photodissociation dynamics of vinyl iodide is obtained. Photoexcitation at 200 nm, associated with a nI(⊥)σ* transition, leads to a fast dissociation occurring in a repulsive potential energy surface, which is mediated by a CI with a low-lying excited electronic state. This mechanism resembles the typical dissociation of alkyl iodides in the first absorption A-band. In contrast, one-photon excitation at 199.2 nm into a well-defined vibronic structure of the absorption spectrum is assigned to a nI(‖)π* transition. The subsequent dissociation dynamics from that state features an ultrafast electronic predissociation with sub-200 femtosecond reaction time. State-switching at a first CI with a low-lying electronic state governing the mechanism involves states of completely different character, occurring in less than 20 fs. This remarkably fast process takes place through an initial stretch of the C 00000000 00000000 00000000 00000000 11111111 00000000 11111111 00000000 00000000 00000000 C bond, followed by a C-I elongation with subsequent vibrational activity in the C C stretch mode.
Descrição: Funding Information: This research has been carried out within the Unidad Asociada Química Física Molecular between the Departamento de Química Física of the Universidad Complutense de Madrid and CSIC. The financial support from the Spanish Ministry of Science and Innovation under Grants No. PID2021-122549NB-C21 and PID2021-122839NB-I00 is gratefully acknowledged. This work was supported in part by the Madrid Government (Comunidad de Madrid, Spain) under the Multi-annual Agreement with Universidad Complutense de Madrid in the line Research Incentive for Young PhDs, in the context of the V PRICIT (Regional Program of Research and Technological Innovation) (Grant No. PR27/21-010). P. L.-V. acknowledges Fundación Carolina for a mobility grant at Complutense University of Madrid under the Programa de Movilidad de Profesores e Investigadores Portugueses (Fundación Endesa). Part of the experiments presented here was performed at the DESIRS beamline at synchrotron SOLEIL under Proposal No. 20170473. We acknowledge SOLEIL for the smooth provision of the synchrotron radiation facility. We are grateful for the facilities provided by the Center for Ultrafast Lasers of Universidad Complutense de Madrid.
Peer review: yes
URI: http://hdl.handle.net/10362/185314
DOI: https://doi.org/10.1039/d5cp00236b
ISSN: 1463-9076
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