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March 7, 2026The Journal of Organic Chemistry2 citations

Anion-Induced Shuttling of Macrocycles in Pyrene- and Anthracene-Stoppered 2Rotaxane-Based Molecular Switches: X23C7 Shuttling-Induced Superior Fluorescence Enhancement

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MJMukesh JaiswalNational Institute of Technology PatnaSDSuvankar DasguptaNational Institute of Technology Patna

Key Points

  • The research aims to investigate how anion-induced shuttling affects fluorescence enhancement in bistable [2]rotaxanes.
  • Synthesis of pyrene- and anthracene-stoppered [2]rotaxanes via click reaction.
  • Examination of fluorescence enhancement in different solvent ratios (acetonitrile/water).
  • Analysis of switching behavior upon exposure to various anions such as cyanide and fluoride.
  • Testing the reversibility of the system with trifluoroacetic acid.
  • Fluorescence enhancement was significantly greater for the [23]crown ether compared to the [24]crown ether.
  • Cyanide anion induced switching demonstrated the highest fluorescence enhancement in both solvent environments.
  • A nanomolar limit of detection for cyanide anion was observed with all studied [2]rotaxanes.
  • Portable investigations resulted in visible fluorescence responses specifically with X23C7 macrocycle.

Abstract

Pyrene- and anthracene-stoppered bistable 2rotaxanes, comprising 23- and 24crown ethers, were obtained in high yield by a click reaction. All four 2rotaxanes exhibited anion-induced shuttling of crown ethers from the ammonium to the methyl triazolium moiety, accompanied by sharp fluorescence enhancements in an acetonitrile/water (v/v = 99:1) medium. The magnitude of fluorescence enhancement, however, has been much greater in the case of shuttling for 23crown ether (X23C7) than for the 24crown ether (DB24C8) in both pyrene- and anthracene-stoppered bistable 2rotaxanes. Anions such as cyanide, fluoride, acetate, and sulfate affected the switching in acetonitrile/water (v/v = 99:1) medium, while only the cyanide anion induced switching in a more hydrated environment, such as acetonitrile/water (v/v = 92:8), where, yet again, greater fluorescence enhancement was observed upon X23C7 shuttling. Reversibility with trifluoroacetic acid was maneuvered toward reproducibility of the fluorescence output and consequent recyclability of these 2rotaxanes. An impressive nanomolar limit of detection (LOD) for the cyanide anion was observed with all the 2rotaxanes. Portable cyanide anion investigation with a fixed concentration of anthracene-terminated 2rotaxanes enabled a naked eye "turn-on" response only when incorporated with the X23C7 macrocycle, thereby manifesting a visually discernible difference with respect to the closely related DB24C8 macrocycle.

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Cite This Study

Jaiswal et al. (2026) studied this question.

synapsesocial.com/papers/69abc0b85af8044f7a4e9554https://doi.org/10.1021/acs.joc.5c03244
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