Background
Type: Article

Protonated serotonin: Geometry, electronic structures and photophysical properties

Journal: Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy (13861425)Year: 5 July 2017Volume: 182Issue: Pages: 8 - 16
DOI:10.1016/j.saa.2017.03.069Language: English

Abstract

The geometry and electronic structures of protonated serotonin have been investigated by the aim of MP2 and CC2 methods. The relative stabilities, transition energies and geometry of sixteen different protonated isomers of serotonin have been presented. It has been predicted that protonation does not exhibit essential alteration on the S1 ← S0 electronic transition energy of serotonin. Instead, more complicated photophysical nature in respect to its neutral analogue is suggested for protonated system owing to radiative and non-radiative deactivation pathways. In addition to hydrogen detachment (HD), hydrogen/proton transfer (H/PT) processes from ammonium to indole ring along the NH+⋯ π hydrogen bond have been predicted as the most important photophysical consequences of SERH+ at S1 excited state. The PT processes is suggested to be responsible for fluorescence of SERH+ while the HD driving coordinate is proposed for elucidation of its nonradiative deactivation mechanism. © 2017