Photodissociation dynamics of the pyridinyl radical: Time-dependent quantum wave-packet calculations
The H-atom photodissociation reaction from the pyridinyl radical ( C 5 H 5 NH ) via the low-lying π σ * excited electronic state is investigated by nonadiabatic time-dependent quantum wave-packet dynamics calculations. A model comprising three electronic states and three nuclear coordinates has been...
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Veröffentlicht in: | The Journal of chemical physics 2017-03, Vol.146 (12), p.124304-124304 |
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Hauptverfasser: | , , , |
Format: | Artikel |
Sprache: | eng |
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Online-Zugang: | Volltext |
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Zusammenfassung: | The H-atom photodissociation reaction from the pyridinyl radical (
C
5
H
5
NH
) via the low-lying
π
σ
*
excited electronic state is investigated by nonadiabatic time-dependent quantum wave-packet dynamics calculations. A model comprising three electronic states and three nuclear coordinates has been constructed using ab initio multi-configurational self-consistent-field and multi-reference perturbation theory methods. Two conical intersections among the three lowest electronic states have been characterized in the framework of the linear vibronic-coupling model. Time-dependent wave-packet simulations have been performed using the multi-configuration time-dependent Hartree method. The population dynamics of the diabatic and adiabatic electronic states and the time-dependent dissociation behavior are analyzed for various vibrational initial conditions. The results provide detailed mechanistic insight into the photoinduced H-atom dissociation process from a hypervalent aromatic radical and show that an efficient dissociation reaction through two conical intersections is possible. |
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ISSN: | 0021-9606 1089-7690 |
DOI: | 10.1063/1.4978283 |