Abstract <p>A naphthalimide-based Schiff base (probe <b>1</b>) was synthesized for the selective detection of Cu<sup>2+</sup> ions in a MeOH: H<sub>2</sub>O (9:1, v/v) solvent system. The optical properties of the probe were investigated using UV–visible and fluorescence spectroscopy. In the UV–visible spectrum, probe <b>1</b> displayed absorption bands at 260&#xa0;nm and 330&#xa0;nm. Fluorescence measurements revealed an emission peak at 445&#xa0;nm, accompanied by a shoulder at 470&#xa0;nm. Upon the addition of Cu<sup>2+</sup> ions, a significant quenching of the fluorescence intensity was observed, whereas other metal ions showed negligible interference. Quantitative analysis revealed a limit of detection (LOD) of 1.22 × 10<sup>–5</sup>&#xa0;M and a limit of quantification (LOQ) of 4.08 × 10<sup>–5</sup>&#xa0;M for Cu<sup>2+</sup>. The association constant was calculated from the B–H plot which was determined to be 1.43 × 10<sup>2</sup>&#xa0;M<sup>−1</sup> with the quenching constant of 1.99 × 10<sup>2</sup>&#xa0;M calculated from the Stern–Volmer plot. Also, the binding stoichiometry of 2:1 was determined by Job’s plot between the probe <b>1</b> and Cu<sup>2+</sup> ions, respectively. Further, the results were validated by HR-MS, DLS, and computational studies. The DFT studies revealed a charge transfer from the thiophene ring towards the naphthalimide moiety which was significantly inhibited in the presence of Cu<sup>2+</sup> ions.</p> Graphical abstract <p></p>

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A fluorescent “turn-off” naphthalimide-derived Schiff base for sensing Cu2+ ions: experimental and computational approach

  • Gurdeep Kaur,
  • Iqubal Singh,
  • Gulshan Kumar

摘要

Abstract

A naphthalimide-based Schiff base (probe 1) was synthesized for the selective detection of Cu2+ ions in a MeOH: H2O (9:1, v/v) solvent system. The optical properties of the probe were investigated using UV–visible and fluorescence spectroscopy. In the UV–visible spectrum, probe 1 displayed absorption bands at 260 nm and 330 nm. Fluorescence measurements revealed an emission peak at 445 nm, accompanied by a shoulder at 470 nm. Upon the addition of Cu2+ ions, a significant quenching of the fluorescence intensity was observed, whereas other metal ions showed negligible interference. Quantitative analysis revealed a limit of detection (LOD) of 1.22 × 10–5 M and a limit of quantification (LOQ) of 4.08 × 10–5 M for Cu2+. The association constant was calculated from the B–H plot which was determined to be 1.43 × 102 M−1 with the quenching constant of 1.99 × 102 M calculated from the Stern–Volmer plot. Also, the binding stoichiometry of 2:1 was determined by Job’s plot between the probe 1 and Cu2+ ions, respectively. Further, the results were validated by HR-MS, DLS, and computational studies. The DFT studies revealed a charge transfer from the thiophene ring towards the naphthalimide moiety which was significantly inhibited in the presence of Cu2+ ions.

Graphical abstract