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