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◆ Discover Sensors2026-05-11· Fluorescence

A highly selective fluorescent chemosensor for turn-on recognition of Zn2+ and turn-off recognition of Cu2+ ions with applications in real samples, molecular logic gate and cell imaging studies

S. Priyalakshmi Devi, Nayan Roy, Abhijit Dutta, Dharmeshwar Barhoi, Sarbani Giri, T. Sanjoy Singh

原始摘要(英文原文)· Original abstract
In this research work, we have successfully designed and developed a Schiff base fluorescent chemosensor for detecting Zn 2+ and Cu 2+ ions using absorption and fluorescence spectroscopy. A stable complex formation of L with Zn 2+ was observed with a noticeable isosbestic point in the absorption spectra. Moreover, fluorescence “on-off” response with Zn 2+ and Cu 2+ was observed which indicates selectively senses of Zn 2+ and Cu 2+ . This sensor displays 1:1 stoichiometric ratio with metal ions by 1 H NMR titration, mass spectra, BH-plot and Job’s plot. Moreover, the recyclability of L was assessed through EDTA showing an efficient fluorescence “off-on-off” signal response. Furthermore, the (L+Zn 2+ ) ensemble formed was used for selective recognize F − ion. L achieved an INHIBIT logic function using different chemical inputs and corresponding emission as output. The optimized structures of L and complexes (L+Zn 2+ and L+Cu 2+ ) were used to understand spectral properties using DFT which further calculated different reactivity descriptors. This selective sensitivity of L towards Zn 2+ were successfully studied and used for detection of Zn 2+ intracellularly in mouse breast adenocarcinoma cell.
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A highly selective fluorescent chemosensor for turn-on recognition of Zn2+ and turn-off recognition of Cu2+ ions with applications in real samples, molecular logic gate and cell imaging studies — 科研速览 Science Skim