Scientific article
English

Excited-State Symmetry Breaking and Localization in a Noncentrosymmetric Electron Donor–Acceptor–Donor Molecule

Published inThe journal of physical chemistry letters, vol. 15, p. 8280-8286
Publication date2024-08-06
First online date2024-08-06
Abstract

Electronic excitation in quadrupolar conjugated molecules rapidly localizes on a single electron donor–acceptor (DA) branch when in polar environments. The loss of center of inversion upon this excited-state symmetry breaking (ES-SB) can be monitored by exploiting the relaxation of the exclusion rules for IR and Raman vibrational transitions. Here, we compare ES-SB in a right-angled (1) and a centrosymmetric (2) DAD dyes using time-resolved IR spectroscopy. We show that the localization of the excitation can also be identified with the bent molecule 1. We find that contrary to dye 2, subpopulations with localized and delocalized excitation coexist for 1 in weak to medium polar solvents. This difference originates from the torsional disorder present in the excited state of 1 but not of 2. Additionally, irreversible localization in a bent molecule is shown to require higher solvent polarity than in a centrosymmetric one.

Research groups
Citation (ISO format)
DEREKA, Bogdan et al. Excited-State Symmetry Breaking and Localization in a Noncentrosymmetric Electron Donor–Acceptor–Donor Molecule. In: The journal of physical chemistry letters, 2024, vol. 15, p. 8280–8286. doi: 10.1021/acs.jpclett.4c01694
Main files (2)
Article (Accepted version)
accessLevelRestrictedaccessLevelPublic 07/08/2025
Article (Published version)
accessLevelRestricted
Identifiers
Additional URL for this publicationhttps://pubs.acs.org/doi/10.1021/acs.jpclett.4c01694
Journal ISSN1948-7185
122views
0downloads

Technical informations

Creation07/08/2024 06:03:09
First validation07/08/2024 13:04:18
Update time07/08/2024 13:04:18
Status update07/08/2024 13:04:18
Last indexation01/11/2024 10:43:57
All rights reserved by Archive ouverte UNIGE and the University of GenevaunigeBlack