Issue 46, 2024, Issue in Progress

Aromatic stabilization energies in excited states at the multiconfigurational level: assessment in archetypal organic rings

Abstract

In this study, the excited state (anti)aromaticity of archetypal rings: benzene, cyclobutadiene, and cyclooctatetraene, was investigated using the energetic criterion by calculating aromatic stabilization energies. Calculations were performed at the multiconfigurational level, including dynamic correlation effect corrections using the N-electron valence state perturbation theory (NEVPT2) method. Results were compared with previously published data based on the magnetic and delocalization criteria. Aromaticity was assessed for the ground state, singlet excited states (S1, S2, and S3), and triplet excited states (T1, T2, T3, and T4). (Anti)aromaticity assignments using the energetic criterion demonstrate both agreement and discrepancies with the other criteria, particularly for higher energy electronic states demonstrating the complexity of aromaticity assignment beyond the ground state. Finally, an approximate equation is proposed for the calculation of aromatic stabilization energies in excited states using experimental data such as formation enthalpies and well-resolved absorption spectra.

Graphical abstract: Aromatic stabilization energies in excited states at the multiconfigurational level: assessment in archetypal organic rings

Supplementary files

Article information

Article type
Paper
Submitted
16 Jul 2024
Accepted
10 Oct 2024
First published
23 Oct 2024
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2024,14, 33741-33746

Aromatic stabilization energies in excited states at the multiconfigurational level: assessment in archetypal organic rings

R. Pino-Rios, RSC Adv., 2024, 14, 33741 DOI: 10.1039/D4RA05147E

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