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Fluorescent Nanoparticles for the Measurement of Ion Concentration in Biological Systems
Published on: July 4, 2011
Schiff Base-Derived Chemosensors for Toxic Ions (Al3+, Cu2+, and Hg2+) Sensing and Cellular Fluorescence Imaging:
1Department of Chemistry, Rajalakshmi Engineering College, Chennai, India.
Abstract:
Schiff base-derived chemosensors have emerged as highly versatile and tunable platforms for the selective optical detection of environmentally and biologically hazardous metal ions, particularly Al³+, Cu2+, and Hg2+. This review critically consolidates recent progress in imine-based ligand design, highlighting the strategic incorporation of heteroaromatic scaffolds, electron-donating coordination sites (-O, -N, and -S), π-conjugation rigidification, and intramolecular hydrogen-bonding architectures that precisely modulate metal-binding geometry and photophysical response. Special attention is devoted to mechanistic insights underlying signal generation, including chelation-enhanced fluorescence (CHEF), metal-induced quenching, PET/ICT regulation, ESIPT modulation, FRET-assisted ratiometric sensing, and aggregation-induced emission phenomena. Their performance in live-cell imaging is discussed in terms of intracellular stability, pH adaptability, photostability, and cytocompatibility, underscoring the translational potential of Schiff base sensors in environmental monitoring and biomedical diagnostics.

