Asymmetric Schiff base-based colorimetric and fluorescent sensor for Al3+ detection in real samples and live-cell bioimaging

Abdel Aziz, Ayman; Abdel-Aziz, Ali M;

Abstract


A novel asymmetric heterocyclic Schiff base chemosensor, (E)-1-(((2-amino-5-methylpyridin-3-yl)imino)methyl)naphthalen-2-ol (AMMN), was synthesized and thoroughly characterized using microanalysis, FTIR, ESI-MS, 1H NMR, and 13C NMR. The interaction of AMMN with various metal ions was investigated via UV-visible and fluorescence spectroscopy. The sensor displayed high selectivity and a sensitive fluorescence response toward Al3+ in a DMSO/HEPES buffer solution (1 : 9, v/v) at pH 7.4. The binding constant of AMMN with Al3+ was determined using the Benesi-Hildebrand plot, yielding values of 2.90 × 103 M-1 and 9.69 × 103 M-1 based on UV-visible and fluorescence spectroscopic analyses, respectively. The detection mechanism was identified as a 1 : 1 binding interaction between AMMN and Al3+, as confirmed by ESI-MS, Job plot analysis, and 1H NMR titration. The sensor exhibited excellent linearity, with low detection limits of 1.7 × 10-6 M and 5.3 × 10-7 M, as determined by UV-visible and fluorescence titration studies, respectively. Furthermore, theoretical analysis using density functional theory (DFT) was conducted to support the experimental results for both AMMN and its AMMN-Al3+ complex.


Other data

Title Asymmetric Schiff base-based colorimetric and fluorescent sensor for Al3+ detection in real samples and live-cell bioimaging
Authors Abdel Aziz, Ayman ; Abdel-Aziz, Ali M
Issue Date 15-May-2025
Journal RSC Advances 
Volume 15
Issue 21
Start page 16999
End page 17014
DOI 10.1039/d5ra01372k
PubMed ID 40395794

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