DFT and ab initio calculations of ionization potentials, proton affinities and bond dissociation enthalpies of aromatic compounds

Author:

Cagardová Denisa1,Michalík Martin1,Klein Erik1,Lukeš Vladimír1,Marković Zoran2

Affiliation:

1. Institute of Physical Chemistry and Chemical Physics , Slovak University of Technology in Bratislava , Radlinského 9, SK- 812 37 Bratislava , Slovakia

2. State University of Novi Pazar , Vuka Karadžića bb, 36300 Novi Pazar , Serbia

Abstract

Abstract Theoretical study of phenol, thiophenol, benzeneselenol, aniline and their para-amino and paranitro derivatives is presented. Neutral molecules, their deprotonated forms, neutral radicals, and radical cations were studied using three Density Functional Theory (DFT) functionals as well as combined DFT and ab initio G4 method in order to calculate the N—H, O—H, S—H, and Se—H bond dissociation enthalpies (BDE), proton affinities of corresponding anions (PA) and ionization potentials (IP) of studied compounds. These quantities represent fundamental reaction enthalpies related to the radical scavenging action of primary antioxidants. Calculated values were compared with available experimental data to assess applicability of the computational approaches employed. M06-2X/6-311++G(d,p) and G4 methods showed the best agreement with the available experimental gas-phase reaction enthalpies.

Publisher

Walter de Gruyter GmbH

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