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Ultrafast dynamics of formation and autodetachment of a dipole-bound state in an open-shell π-stacked dimer anion

Isolated π-stacked dimer radical anions present the simplest model of an excess electron in a π-stacked environment. Here, frequency-, angle-, and time-resolved photoelectron imaging together with electronic structure calculations have been used to characterise the π-stacked coenzyme Q(0) dimer radi...

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Autores principales: Bull, James N., West, Christopher W., Verlet, Jan R. R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6020752/
https://www.ncbi.nlm.nih.gov/pubmed/30155188
http://dx.doi.org/10.1039/c6sc01062h
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author Bull, James N.
West, Christopher W.
Verlet, Jan R. R.
author_facet Bull, James N.
West, Christopher W.
Verlet, Jan R. R.
author_sort Bull, James N.
collection PubMed
description Isolated π-stacked dimer radical anions present the simplest model of an excess electron in a π-stacked environment. Here, frequency-, angle-, and time-resolved photoelectron imaging together with electronic structure calculations have been used to characterise the π-stacked coenzyme Q(0) dimer radical anion and its exited state dynamics. In the ground electronic state, the excess electron is localised on one monomer with a planar para-quinone ring, which is solvated by the second monomer in which carbonyl groups are bent out of the para-quinone ring plane. Through the π-stacking interaction, the dimer anion exhibits a number of charge-transfer (intermolecular) valence-localised resonances situated in the detachment continuum that undergo efficient internal conversion to a cluster dipole-bound state (DBS) on a ∼60 fs timescale. In turn, the DBS undergoes vibration-mediated autodetachment on a 2.0 ± 0.2 ps timescale. Experimental vibrational structure and supporting calculations assign the intermolecular dynamics to be facilitated by vibrational wagging modes of the carbonyl groups on the non-planar monomer. At photon energies ∼0.6–1.0 eV above the detachment threshold, a competition between photoexcitation of an intermolecular resonance leading to the DBS, and photoexcitation of an intramolecular resonance leading to monomer-like dynamics further illustrates the π-stacking specific dynamics. Overall, this study provides the first direct observation of both internal conversion of resonances into a DBS, and characterisation of a vibration-mediated autodetachment in real-time.
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spelling pubmed-60207522018-08-28 Ultrafast dynamics of formation and autodetachment of a dipole-bound state in an open-shell π-stacked dimer anion Bull, James N. West, Christopher W. Verlet, Jan R. R. Chem Sci Chemistry Isolated π-stacked dimer radical anions present the simplest model of an excess electron in a π-stacked environment. Here, frequency-, angle-, and time-resolved photoelectron imaging together with electronic structure calculations have been used to characterise the π-stacked coenzyme Q(0) dimer radical anion and its exited state dynamics. In the ground electronic state, the excess electron is localised on one monomer with a planar para-quinone ring, which is solvated by the second monomer in which carbonyl groups are bent out of the para-quinone ring plane. Through the π-stacking interaction, the dimer anion exhibits a number of charge-transfer (intermolecular) valence-localised resonances situated in the detachment continuum that undergo efficient internal conversion to a cluster dipole-bound state (DBS) on a ∼60 fs timescale. In turn, the DBS undergoes vibration-mediated autodetachment on a 2.0 ± 0.2 ps timescale. Experimental vibrational structure and supporting calculations assign the intermolecular dynamics to be facilitated by vibrational wagging modes of the carbonyl groups on the non-planar monomer. At photon energies ∼0.6–1.0 eV above the detachment threshold, a competition between photoexcitation of an intermolecular resonance leading to the DBS, and photoexcitation of an intramolecular resonance leading to monomer-like dynamics further illustrates the π-stacking specific dynamics. Overall, this study provides the first direct observation of both internal conversion of resonances into a DBS, and characterisation of a vibration-mediated autodetachment in real-time. Royal Society of Chemistry 2016-08-01 2016-05-04 /pmc/articles/PMC6020752/ /pubmed/30155188 http://dx.doi.org/10.1039/c6sc01062h Text en This journal is © The Royal Society of Chemistry 2016 https://creativecommons.org/licenses/by/3.0/This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Bull, James N.
West, Christopher W.
Verlet, Jan R. R.
Ultrafast dynamics of formation and autodetachment of a dipole-bound state in an open-shell π-stacked dimer anion
title Ultrafast dynamics of formation and autodetachment of a dipole-bound state in an open-shell π-stacked dimer anion
title_full Ultrafast dynamics of formation and autodetachment of a dipole-bound state in an open-shell π-stacked dimer anion
title_fullStr Ultrafast dynamics of formation and autodetachment of a dipole-bound state in an open-shell π-stacked dimer anion
title_full_unstemmed Ultrafast dynamics of formation and autodetachment of a dipole-bound state in an open-shell π-stacked dimer anion
title_short Ultrafast dynamics of formation and autodetachment of a dipole-bound state in an open-shell π-stacked dimer anion
title_sort ultrafast dynamics of formation and autodetachment of a dipole-bound state in an open-shell π-stacked dimer anion
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6020752/
https://www.ncbi.nlm.nih.gov/pubmed/30155188
http://dx.doi.org/10.1039/c6sc01062h
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