| Literature DB >> 33900071 |
Maria Gabriella Chiariello1, Umberto Raucci1, Greta Donati1, Nadia Rega1,2.
Abstract
In this work, we simulate the excited state proton transfer (ESPT) reaction involving the pyranine photoacid and an acetate molecule as proton acceptor, connected by a bridge water molecule. We employ ab initio molecular dynamics combined with an hybrid quantum/molecular mechanics (QM/MM) framework. Furthermore, a time-resolved vibrational analysis based on the wavelet-transform allows one to identify two low frequency vibrational modes that are fingerprints of the ESPT event: a ring wagging and ring breathing. Their composition suggests their key role in optimizing the structure of the proton donor-acceptor couple and promoting the ESPT event. We find that the choice of the QM/MM partition dramatically affects the photoinduced reactivity of the system. The QM subspace was gradually extended including the water molecules directly interacting with the pyranine-water-acetate system. Indeed, the ESPT reaction takes place when the hydrogen bond network around the reactive system is taken into account at full QM level.Entities:
Year: 2021 PMID: 33900071 DOI: 10.1021/acs.jpca.1c00692
Source DB: PubMed Journal: J Phys Chem A ISSN: 1089-5639 Impact factor: 2.781