4.7 Article

Ultraviolet photodissociation action spectroscopy of the N-pyridinium cation

Journal

JOURNAL OF CHEMICAL PHYSICS
Volume 142, Issue 1, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.4904267

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Funding

  1. Australian Research Council (ARC) [CE0561607, DP1094135, DP140101237, DP110100312, DP120100100, DP110102932]
  2. Intersect Resource Allocation Committee
  3. National Computational Infrastructure (NCI) Merit Allocation Scheme (MAS)

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The S-1 <- S-0 electronic transition of the N-pyridinium ion (C5H5NH+) is investigated using ultraviolet photodissociation (PD) spectroscopy of the bare ion and also the N-2-tagged complex. Gas-phase N-pyridinium ions photodissociate by the loss of molecular hydrogen (H-2) in the photon energy range 37 000-45 000 cm(-1) with structurally diagnostic ion-molecule reactions identifying the 2-pyridinylium ion as the exclusive co-product. The photodissociation action spectra reveal vibronic details that, with the aid of electronic structure calculations, support the proposal that dissociation occurs through an intramolecular rearrangement on the ground electronic state following internal conversion. Quantum chemical calculations are used to analyze the measured spectra. Most of the vibronic features are attributed to progressions of totally symmetric ring deformation modes and out-of-plane modes active in the isomerization of the planar excited state towards the non-planar excited state global minimum. (C) 2015 AIP Publishing LLC.

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