Published September 28, 2012 | Version v1
Miscellaneous Open

Characterization and dynamics of excited states of protonated aromatic molecules

Description

Protonated aromatic molecules play an important role in electrophilic aromatic substitution reactions, fundamental reactions in organic chemistry and in various biological processes. The interstellar medium is another environment which is likely to contain the protonated aromatic molecules, that's because these molecules are stable chemically since they are close shell electronic structure. These molecules were also identified in others environments such as combustion flames, plasmas of various hydrocarbons and the upper atmosphere of Titan. Protonated molecules are usually very sensitive to their local environment; a gas phase study is required to determine their intrinsic properties. Until now, very little is known about the isolated protonated molecules, only a few results are available in the literature. This lack of data is due to the difficulties of the production and the cooling of these molecules in gas phase. The technical progress we have done has enabled the study of protonated molecules in the gas phase at very low temperatures, using an ion sources, supersonic jet and the laser induced photofragmentation techniques. Using this technique, we have recorded many electronic spectra (S0→S1) of different protonated molecules. We can regroup the studied molecules into four: Linear protonated polycyclic aromatic molecules (benzene, naphthalene, anthracene, tetracene, pentacene). Nonlinear protonated polycyclic aromatic molecules (fluorene, phenanthrene, pyrene). Protonated molecules containing an hetero atom (benzaldehyde, salicylaldehyde, 1-naphthol and 2-naphthol, indole, aniline). Protonated cluster (dimer of benzene, naphthalene (H2O)n, n = 1,2,3. Naphthalene (NH3)n, n = 1,2,3, benzaldehyde (Ar, N2)). Most of those spectra are red-shifted compare to the spectrums of neutral parent molecules. This red-shift is due to charge transfer character of the first excited state. Some spectra are vibrationally resolved, while for other molecules the spectrum do not shows any vibrational progression. This behaviour is explained by the dynamic of the excited state, this dynamic being usually is very fast, sometimes leading to the ground state through a conical intersection. The spectra of protonated molecules are very active vibrationally in comparison with neutral molecules, many vibrational modes forbidden for neutral molecule becomes active for the protonated one (Franck-Condon factor is not zero). This is reflecting the charge transfer character of the excited state. The experimental results were complemented by ab-initio calculations, which have allowed determining the electronic transition, the geometric and electronic structure of the molecule, the vibrational modes, and for some of these molecules the dynamics of excited state. Calculations are generally in very good agreement with experiments. (author)

Abstract (French)

Les molecules aromatiques protonees jouent un role important dans les reactions de substitution electrophile aromatique, et dans differents processus biologiques. Ces molecules sont presentes aussi dans d'autres milieux tels que les flammes de combustion, les plasmas de divers hydrocarbures, les ionospheres planetaires (Titan) et le milieu interstellaire. Les molecules protonees sont tres stables car elles ont des couches electroniques completes mais elles sont en general tres sensibles a leur environnement local car elles sont chargees: une etude en phase gazeuse est necessaire pour determiner leurs proprietes intrinseques. Jusqu'a present, tres peu de chose etait connu sur les molecules protonees isolees en phase gazeuse, seulement quelques resultats etaient disponibles. Ce manque de donnees venait de la difficulte de generer des molecules protonees en phase gazeuse et surtout de les produire a basse temperature (la protonation est une reaction exothermique). Recemment, des progres ont permis d'etudier les molecules protonees en phase gazeuse a tres basse temperature, en particulier par le developpement des sources ioniques couplees avec des techniques d'expansion de jet supersonique. Grace a cette technique on a enregistre le spectre photo fragmentation de l'etat fondamental vers le premier etat excite (S0→S1) de differentes molecules aromatiques protonees en phase gazeuse. Les molecules que nous avons etudiees peuvent etre regroupees en quatre familles: Les molecules polycycliques aromatiques protonees lineaires (benzene, naphtalene, anthracene, tetracene, pentacene). Les molecules polycycliques aromatiques protonees non lineaires (fluorene, phenanthrene, pyrene). Les molecules protonees contenant un hetero atome (benzaldehyde, salicylaldehyde, 1-naphthol et 2-naphthol, indole, aniline). Les agregats protones (dimere de benzene, naphtalene (H2O)n, n=1,2,3. naphtalene (NH3)n, n=1,2,3, benzaldehyde (Ar, N2)). Dans les spectres enregistres presque toutes les transitions electroniques S0→S1sont decalees vers le rouge (basse energie) par rapport a celui des molecules parentes neutres. Ce decalage est du au caractere transfert de charge du premier etat excite. Certains spectres sont resolus vibrationnellement, alors que pour d'autres molecules le spectre ne presente pas de progression vibrationnelle a cause d'un dynamique tres rapide de l'etat excite menant par des intersections coniques a l'etat fondamental. Les spectres d'absorption des molecules protonees sont plus riches en vibrations par comparaison avec les molecules neutre. Cela reflete le changement relativement important de geometrie de l'etat excite du a son caractere transfert de charge. Les resultats experimentaux ont ete completes par des calculs ab-initio qui ont permis de localiser la transition electronique, determiner la structure geometrique et electronique, les modes de vibration et, pour certaines de ces molecules, la dynamique de l'etat excite. Les calculs sont en general en tres bon accord avec les experiences. (auteur)

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Additional details

Additional titles

Original title (French)
Caracterisation et dynamique des etats excites des molecules aromatiques protonees

Publishing Information

Imprint Pagination
289 p.
Report number
FRNC-TH--13661

Optional Information

Notes
[300 refs.]; Available from the INIS Liaison Officer for France, see the INIS website for current contact and E-mail addresses