IRMPD spectroscopy of a PAH cation using FELICE: The infrared spectrum and photodissociation of dibenzo[a,l]pyrene
arXiv:2110.09249 · doi:10.1016/j.jms.2021.111545
Abstract
We present the experimental InfraRed Multiple Photon Dissociation (IRMPD) spectrum and fragmentation mass spectrum of the irregular, cationic PAH dibenzo[a,l]pyrene (CH) in the 6-40 m / 250-1650 cm range. The use of the the Free-Electron Laser for IntraCavity Experiments (FELICE) enabled us to record its Far-InfraRed (FIR) spectrum for the first time. We aim to understand how irregularity affects the infrared spectrum and fragmentation chemistry of PAHs. Dibenzo[a,l]pyrene is an asymmetric, non-planar molecule, for which all vibrational modes are in principle IR-active. Calculated harmonic Density Function Theory (DFT) and anharmonic Density Functional based Tight Binding Molecular Dynamics (DFTB-MD) spectra show a large wealth of bands, which match the experiment well, but with a few differences. The periphery of the molecule contains several edge geometries, but out of all possible modes in the 11-14 m out-of-plane C-H bending region, only one band at 13.5 m is prominent. This fact and the richness of the C-C stretching range make irregular PAHs a possible contributor to D-class interstellar spectra. The fragmentation mass spectra reveal facile 2H-loss and no [2C, 2H]-loss, which is attributed to the sterically hindered, non-planar cove region, which could protect irregular PAHs from radiation damage.
Accepted for publication in The Journal of Molecular Spectroscopy
References in corpus (11)
- Self-passivating edge reconstructions of graphene
- Carbon-rich dust past the asymptotic giant branch: aliphatics, aromatics, and fullerenes in the Magellanic Clouds
- H2 formation on PAHs in photodissociation regions: a high-temperature pathway to molecular hydrogen
- Polycyclic Aromatic Hydrocarbons with armchair edges and the 12.7 μm band
- The 11.2 m emission of PAHs in astrophysical objects
- Breakdown products of gaseous polycyclic aromatic hydrocarbons investigated with infrared ion spectroscopy
- Structural investigation of doubly-dehydrogenated pyrene cations
- Anharmonic Infrared Spectra of Thermally Excited Pyrene(CH): the combined view of DFT-based GVPT2 with AnharmonicCaOs and approximate DFT molecular dynamics with DemonNano
- Photolysis-induced scrambling of PAHs as a mechanism for deuterium storage
- Investigating the importance of edge-structure in the loss of H/H2 of PAH cations: the case of dibenzopyrene isomers
- Gas-phase spectroscopy of photostable PAH ions from the mid- to far-infrared