Regioselective Counterion Association Governs Organohalogenochromism in Ferrocenyl Ionic Push-Pull Chromophores

Abstract Two organometallic cationic D-π-A dyes incorporating ferrocene donors and pyridinium or quinolinium acceptors were synthesized and evaluated for their organohalogenochromic (OHC) behavior in halogenated and non-halogenated solvents. Both dyes exhibited pronounced bathochromic shifts in halogenated media that cannot be explained solely by conventional solvent polarity effects. Triflate titration experiments demonstrated that ICT transition energies are directly controlled by counterion association, while 1H NMR measurements revealed a regioselective interaction centered at the azaheterocyclic acceptor. Benesi–Hildebrand analysis yielded association constants of 4.82 × 10–2 M–1 and 1.38 × 10–2 M–1 for the pyridinium and quinolinium derivatives, respectively. Complementary T1 measurements and TD-DFT calculations further supported a solvent-dependent ion-pairing model. Collectively, the results indicate that organohalogenochromism arises from solvent-controlled modulation of ion-pair equilibria, highlighting regioselective counterion association as a key factor governing the optical response of ferrocenyl ionic push-pull chromophores.

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Publication Details

Journal
The Journal of Physical Chemistry B
Published
2026-09-29
DOI
https://doi.org/10.1021/acs.jpcb.6c05161
Primary Topic
Polydiacetylene-based materials and applications
Type
article
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article

Regioselective Counterion Association Governs Organohalogenochromism in Ferrocenyl Ionic Push-Pull Chromophores

Raúl Mera‐Adasme, Moisés Domínguez, Carolina Aliaga, Fabián Martínez‐Gómez et al.
The Journal of Physical Chemistry B
Polydiacetylene-based materials and applications
article

Regioselective Counterion Association Governs Organohalogenochromism in Ferrocenyl Ionic Push-Pull Chromophores

Raúl Mera‐Adasme, Moisés Domínguez, Carolina Aliaga, Fabián Martínez‐Gómez, Ignacio Aburto
article en

Abstract

Abstract Two organometallic cationic D-π-A dyes incorporating ferrocene donors and pyridinium or quinolinium acceptors were synthesized and evaluated for their organohalogenochromic (OHC) behavior in halogenated and non-halogenated solvents. Both dyes exhibited pronounced bathochromic shifts in halogenated media that cannot be explained solely by conventional solvent polarity effects. Triflate titration experiments demonstrated that ICT transition energies are directly controlled by counterion association, while 1H NMR measurements revealed a regioselective interaction centered at the azaheterocyclic acceptor. Benesi–Hildebrand analysis yielded association constants of 4.82 × 10–2 M–1 and 1.38 × 10–2 M–1 for the pyridinium and quinolinium derivatives, respectively. Complementary T1 measurements and TD-DFT calculations further supported a solvent-dependent ion-pairing model. Collectively, the results indicate that organohalogenochromism arises from solvent-controlled modulation of ion-pair equilibria, highlighting regioselective counterion association as a key factor governing the optical response of ferrocenyl ionic push-pull chromophores.

The Journal of Physical Chemistry B
Friedrich-Alexander-Universität Erlangen-Nürnberg (DE), University of Tarapacá (CL), Universidad Bernardo O'Higgins (CL)
Openalex Percentile: Top 22%
Polydiacetylene-based materials and applications
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Regioselective Counterion Association Governs Organohalogenochromism in Ferrocenyl Ionic Push-Pull Chromophores — Raúl Mera‐Adasme, Moisés Domínguez, et al. · The Journal of Physical Chemistry B (2026) | TGRS Research Map | TGRS