This paper provides spectral characterizations of the two isomers of the 1-methylenepyrene cation, namely, the 1-pyrenemethylium and a pyrene-like isomer owing a tropylium cycle. Both are possible photodissociation products of the 1-methylpyrene cation and were proposed as potential contributors to the diffuse interstellar bands. In that respect, vibrational and electronic spectra are computed for the optimized structures at the density functional theory (DFT) and time-dependent (TD-)DFT levels. Finite temperature effects on these spectra are estimated from molecular dynamics simulations within the density functional-based tight-binding (DFTB) and TD-DFTB frameworks, these methods being first benchmarked against DFT and TD-DFT calculations...
1-Methylpyrene radical cations undergo the loss of a hydrogen atom at internal energies above the fi...
1-Methylpyrene radical cations undergo the loss of a hydrogen atom at internal energies above the fi...
WOS: 000350088500002This study presents a computational investigation of Pyrene and its -OH, -NH2, -...
International audienceThe fragment of the 1-methylpyrene cation, C17H11+, is expected to exist in tw...
International audienceThe fragment of the 1-methylpyrene cation, C17H11+, is expected to exist in tw...
International audienceThe fragment of the 1-methylpyrene cation, C17H11+, is expected to exist in tw...
International audienceThe fragment of the 1-methylpyrene cation, C17H11+, is expected to exist in tw...
International audiencePolycyclic aromatic hydrocarbons (PAHs) and their cations are considered as at...
International audienceCationic benzylium and tropylium are known to be two competitive isomers for t...
International audienceCationic benzylium and tropylium are known to be two competitive isomers for t...
International audienceCationic benzylium and tropylium are known to be two competitive isomers for t...
International audienceCationic benzylium and tropylium are known to be two competitive isomers for t...
International audienceCationic benzylium and tropylium are known to be two competitive isomers for t...
International audienceCationic benzylium and tropylium are known to be two competitive isomers for t...
Author Institution: IRAP; Universite de Toulouse, UPS; CNRS; 9 Av. colonel Roche, BP 44346, F-31028 ...
1-Methylpyrene radical cations undergo the loss of a hydrogen atom at internal energies above the fi...
1-Methylpyrene radical cations undergo the loss of a hydrogen atom at internal energies above the fi...
WOS: 000350088500002This study presents a computational investigation of Pyrene and its -OH, -NH2, -...
International audienceThe fragment of the 1-methylpyrene cation, C17H11+, is expected to exist in tw...
International audienceThe fragment of the 1-methylpyrene cation, C17H11+, is expected to exist in tw...
International audienceThe fragment of the 1-methylpyrene cation, C17H11+, is expected to exist in tw...
International audienceThe fragment of the 1-methylpyrene cation, C17H11+, is expected to exist in tw...
International audiencePolycyclic aromatic hydrocarbons (PAHs) and their cations are considered as at...
International audienceCationic benzylium and tropylium are known to be two competitive isomers for t...
International audienceCationic benzylium and tropylium are known to be two competitive isomers for t...
International audienceCationic benzylium and tropylium are known to be two competitive isomers for t...
International audienceCationic benzylium and tropylium are known to be two competitive isomers for t...
International audienceCationic benzylium and tropylium are known to be two competitive isomers for t...
International audienceCationic benzylium and tropylium are known to be two competitive isomers for t...
Author Institution: IRAP; Universite de Toulouse, UPS; CNRS; 9 Av. colonel Roche, BP 44346, F-31028 ...
1-Methylpyrene radical cations undergo the loss of a hydrogen atom at internal energies above the fi...
1-Methylpyrene radical cations undergo the loss of a hydrogen atom at internal energies above the fi...
WOS: 000350088500002This study presents a computational investigation of Pyrene and its -OH, -NH2, -...