In recent work, we have demonstrated that the excited-state paths for radiationless deactivation and trans --> cis isomerization for a series of polyenes involve a point of conical intersection between the covalent excited and ground states. In this paper we show how motion through this point can "trigger" the production of a transient pi-diradical species (on the ground state) featuring an inverted double bond/single bond pattern. The computations have been carried out using an ab initio CAS-SCF approach and a hybrid molecular mechanics-valence bond (MM-VB) force field on three polyenes of increasing chain length: hexa-1,3,5-triene, octa-1,3,5,7-tetraene, and dodeca-1,3,5,7,9,11-hexaene (C12H14) Our computations show that production of the pi-diradical must be a general feature of photoexcited polyenes. The investigation of the geometrical and electronic structure of these species indicates that they correspond to a pair of neutral solitons carrying unpaired electrons. Semiclassical trajectory computations on the "minimal" polyacetylene model C12H14 are used to model the creation, evolution, and annihilation dynamics of these transient entities.

Garavelli, M., Smith, B.R., Bearpark, M.J., Bernardi, F., Olivucci, M., Robb, M.A. (2000). Relaxation Paths and Dynamics of Photoexcited Polyene Chains:  Evidence for Creation and Annihilation of Neutral Soliton Pairs. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 122(23), 5568-5581 [10.1021/ja000385l].

Relaxation Paths and Dynamics of Photoexcited Polyene Chains:  Evidence for Creation and Annihilation of Neutral Soliton Pairs

Olivucci, Massimo;
2000-01-01

Abstract

In recent work, we have demonstrated that the excited-state paths for radiationless deactivation and trans --> cis isomerization for a series of polyenes involve a point of conical intersection between the covalent excited and ground states. In this paper we show how motion through this point can "trigger" the production of a transient pi-diradical species (on the ground state) featuring an inverted double bond/single bond pattern. The computations have been carried out using an ab initio CAS-SCF approach and a hybrid molecular mechanics-valence bond (MM-VB) force field on three polyenes of increasing chain length: hexa-1,3,5-triene, octa-1,3,5,7-tetraene, and dodeca-1,3,5,7,9,11-hexaene (C12H14) Our computations show that production of the pi-diradical must be a general feature of photoexcited polyenes. The investigation of the geometrical and electronic structure of these species indicates that they correspond to a pair of neutral solitons carrying unpaired electrons. Semiclassical trajectory computations on the "minimal" polyacetylene model C12H14 are used to model the creation, evolution, and annihilation dynamics of these transient entities.
2000
Garavelli, M., Smith, B.R., Bearpark, M.J., Bernardi, F., Olivucci, M., Robb, M.A. (2000). Relaxation Paths and Dynamics of Photoexcited Polyene Chains:  Evidence for Creation and Annihilation of Neutral Soliton Pairs. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 122(23), 5568-5581 [10.1021/ja000385l].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11365/32998
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