Background
Type: Article

Excited State Deactivation Mechanism in Protonated Uracil: New Insights from Theoretical Studies

Journal: Journal of Physical Chemistry A (15205215)Year: 25 June 2020Volume: 124Issue: Pages: 5089 - 5097
Omidyan R.aAbedini F.Shahrokh L.Azimi Gandomani G.a
DOI:10.1021/acs.jpca.0c02284Language: English

Abstract

We have conducted here a theoretical exploration, discussing the distinct excited state lifetimes reported experimentally for the two lowest lying protonated isomers of uracil. In this regard, the first-principal computational levels as well as the nonadiabatic surface hopping dynamics have been employed. It has been revealed that relaxation of the 1ππ∗ state of enol-enol form (EE+) to the ground is barrier-free via out-of-plane coordinates, resulting in an ultrashort S1 lifetime of this species. For the second most stable isomer (EK+), however, a significant barrier predicted in the CASPT2 S1 potential energy profile along the twisting coordinate has been proposed to explain the relevant long lifetime reported experimentally. © 2020 American Chemical Society.