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Type: Article

Electronically Excited States of Neutral, Protonated α-Naphthol and Their Water Clusters: A Theoretical Study

Journal: Journal of Physical Chemistry A (15205215)Year: 25 June 2015Volume: 119Issue: Pages: 6650 - 6660
Omidyan R.a Heidari Z.Salehi M.Azimi Gandomani G.a
DOI:10.1021/acs.jpca.5b02249Language: English

Abstract

The RI-MP2 and RI-CC2 methods have been employed to determine the potential energy profiles of neutral and protonated α-naphthol, in their individual forms and microhydrated with 1 and 3 water molecules, at different electronic states. According to calculated results, it has been predicted that dynamics of nonradiative processes in protonated α-naphthol is essentially different from that of its neutral homologue. In protonated α-naphthol, the calculations reveal that 1σπ∗ state, is the most important photophysical state, having a bound nature with a broad potential curve along the OH coordinate of isolated system, while it is dissociative in monohydrated homologue. In neutral system, similar to phenol, the 1πσ∗ state, plays the fundamental relaxation role along the O-H stretching coordinate. Moreover, microhydration strongly affects the photophysical properties of α-naphthol, mostly by alteration of the 1ππ∗ PE profile, from a bound state in an isolated analogue to a dissociative state in hydrated systems. Furthermore, it has been found that three water molecules are necessary for ground state proton transfer between protonated α-naphthol and water; with a small barrier; (E< 0.1 eV). © 2015 American Chemical Society.