Turning Darkness into Light: Supramolecular Control of Emission in Push–Pull Chromophores

Abstract Donor–acceptor chromophores based on 1,1,4,4-tetracyanobuta-1,3-diene (TCBD) are promising materials for optoelectronic applications; however, their utility is often restricted by intrinsically weak fluorescence caused by efficient non-radiative decay pathways. Herein, we report a new series of donor-substituted, triazole-functionalized TCBD chromophores synthesized via a modular [2 + 2] cycloaddition–retroelectrocyclization approach. Systematic donor engineering at the triazole 4-position enables precise tuning of intramolecular charge transfer (ICT), aggregation behavior, and emissive properties. Although all chromophores exhibit broad ICT absorption bands and pronounced solvatochromism, the hydroxyl-functionalized derivative Tz-HEAP, featuring an AA–BB-type molecular arrangement, displays significantly enhanced fluorescence in CH3CN (ΦF = 4.9%) compared with the other analogues (ΦF = 0.2–0.3%). Concentration-dependent spectroscopic studies, supported by FE-SEM and AFM analyses, reveal the formation of emissive J-type nanoaggregates driven by cooperative π–π stacking and intermolecular hydrogen bonding. Electrochemical studies demonstrate strong electron-accepting characteristics of the TCBD core together with donor-dependent modulation of HOMO energies, resulting in progressive band-gap narrowing across the series. TD-DFT calculations further confirm efficient donor–acceptor electronic communication and dominant HOMO → LUMO charge-transfer transitions. Overall, this work establishes a clear structure–aggregation–property relationship and identifies hydrogen-bond-assisted aggregation as an effective molecular strategy for activating fluorescence in intrinsically non-emissive TCBD-based push–pull systems.

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Publication Details

Journal
The Journal of Organic Chemistry
Published
2026-09-10
DOI
https://doi.org/10.1021/acs.joc.6c01154
Primary Topic
Luminescence and Fluorescent Materials
Type
article
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article

Turning Darkness into Light: Supramolecular Control of Emission in Push–Pull Chromophores

Ramendra Sundar Dey, Md. Ehesan Ali, Govindasamy Jayamurugan, Kritika Nag et al.
The Journal of Organic Chemistry
Luminescence and Fluorescent Materials
article

Turning Darkness into Light: Supramolecular Control of Emission in Push–Pull Chromophores

Ramendra Sundar Dey, Md. Ehesan Ali, Govindasamy Jayamurugan, Kritika Nag, Pooja Das, Ashish Sharma, Sarita Kumari, Surajit Samui
article en

Abstract

Abstract Donor–acceptor chromophores based on 1,1,4,4-tetracyanobuta-1,3-diene (TCBD) are promising materials for optoelectronic applications; however, their utility is often restricted by intrinsically weak fluorescence caused by efficient non-radiative decay pathways. Herein, we report a new series of donor-substituted, triazole-functionalized TCBD chromophores synthesized via a modular [2 + 2] cycloaddition–retroelectrocyclization approach. Systematic donor engineering at the triazole 4-position enables precise tuning of intramolecular charge transfer (ICT), aggregation behavior, and emissive properties. Although all chromophores exhibit broad ICT absorption bands and pronounced solvatochromism, the hydroxyl-functionalized derivative Tz-HEAP, featuring an AA–BB-type molecular arrangement, displays significantly enhanced fluorescence in CH3CN (ΦF = 4.9%) compared with the other analogues (ΦF = 0.2–0.3%). Concentration-dependent spectroscopic studies, supported by FE-SEM and AFM analyses, reveal the formation of emissive J-type nanoaggregates driven by cooperative π–π stacking and intermolecular hydrogen bonding. Electrochemical studies demonstrate strong electron-accepting characteristics of the TCBD core together with donor-dependent modulation of HOMO energies, resulting in progressive band-gap narrowing across the series. TD-DFT calculations further confirm efficient donor–acceptor electronic communication and dominant HOMO → LUMO charge-transfer transitions. Overall, this work establishes a clear structure–aggregation–property relationship and identifies hydrogen-bond-assisted aggregation as an effective molecular strategy for activating fluorescence in intrinsically non-emissive TCBD-based push–pull systems.

The Journal of Organic Chemistry
Nanchang Institute of Science & Technology (CN)
Openalex Percentile: Top 24%
Luminescence and Fluorescent Materials
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