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Discriminative 'Turn-on' Detection of Al3+ and Ga3+ Ions as Well as Aspartic Acid by Two Fluorescent Chemosensors.


ABSTRACT: In this work, two Schiff-base-based chemosensors L1 and L2 containing electron-rich quinoline and anthracene rings were designed. L1 is AIEE active in a MeOH-H2O solvent system while formed aggregates as confirmed by the DLS measurements and fluorescence lifetime studies. The chemosensor L1 was used for the sensitive, selective, and reversible 'turn-on' detection of Al3+ and Ga3+ ions as well as Aspartic Acid (Asp). Chemosensor L2, an isomer of L1, was able to selectively detect Ga3+ ion even in the presence of Al3+ ions and thus was able to discriminate between the two ions. The binding mode of chemosensors with analytes was substantiated through a combination of 1H NMR spectra, mass spectra, and DFT studies. The 'turn-on' nature of fluorescence sensing by the two chemosensors enabled the development of colorimetric detection, filter-paper-based test strips, and polystyrene film-based detection techniques.

SUBMITTER: Goyal H 

PROVIDER: S-EPMC9964346 | biostudies-literature | 2023 Feb

REPOSITORIES: biostudies-literature

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Discriminative 'Turn-on' Detection of Al<sup>3+</sup> and Ga<sup>3+</sup> Ions as Well as Aspartic Acid by Two Fluorescent Chemosensors.

Goyal Hina H   Annan Ibrahim I   Ahluwalia Deepali D   Bag Arijit A   Gupta Rajeev R  

Sensors (Basel, Switzerland) 20230206 4


In this work, two Schiff-base-based chemosensors <b>L1</b> and <b>L2</b> containing electron-rich quinoline and anthracene rings were designed. <b>L1</b> is AIEE active in a MeOH-H<sub>2</sub>O solvent system while formed aggregates as confirmed by the DLS measurements and fluorescence lifetime studies. The chemosensor <b>L1</b> was used for the sensitive, selective, and reversible 'turn-on' detection of Al<sup>3+</sup> and Ga<sup>3+</sup> ions as well as Aspartic Acid (Asp). Chemosensor <b>L2</  ...[more]

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