| Literature DB >> 27171787 |
Michel Broquier1,2, Satchin Soorkia1, Claude Dedonder-Lardeux3, Christophe Jouvet3, Patrice Theulé3, Gilles Grégoire1,2.
Abstract
The excited state properties of protonated ortho (2-), meta (3-), and para (4-) aminopyridine molecules have been investigated through UV photofragmentation spectroscopy and excited state coupled-cluster CC2 calculations. Cryogenic ion spectroscopy allows recording well-resolved vibronic spectroscopy that can be reproduced through Franck-Condon simulations of the ππ* local minimum of the excited state potential energy surface. The excited state lifetimes have also been measured through a pump-probe excitation scheme and compared to the estimated radiative lifetimes. Although protonated aminopyridines are rather simple aromatic molecules, their deactivation mechanisms are indeed quite complex with unexpected results. In protonated 3- and 4-aminopyridine, the fragmentation yield is negligible around the band origin, which implies the absence of internal conversion to the ground state. Besides, a twisted intramolecular charge transfer reaction is evidenced in protonated 4-aminopyridine around the band origin, while excited state proton transfer from the pyridinic nitrogen to the adjacent carbon atom opens with roughly 500 cm(-1) of excess energy.Entities:
Year: 2016 PMID: 27171787 DOI: 10.1021/acs.jpca.6b03510
Source DB: PubMed Journal: J Phys Chem A ISSN: 1089-5639 Impact factor: 2.781