A highly selective 2-hydroxybenzhydrazone based dual sensor for Cu2+ and Fe2+ ions: Spectroscopic, computational, cell imaging studies and logic gate construction
Author:
Funder
SASTRA University
Publisher
Elsevier BV
Subject
Inorganic Chemistry,Organic Chemistry,Spectroscopy,Analytical Chemistry
Reference51 articles.
1. Recent advances (2017–20) in the detection of copper ion by using fluorescence sensors working through transfer of photo-induced electron (PET), excited-state intramolecular proton (ESIPT) and Förster resonance energy (FRET);Sharma;Spectrochim. Acta A,2021
2. Overview on recently reported fluorometric sensors for the detection of copper ion based on internal charge transfer (ICT), paramagnetic effect and aggregation induced emission (AIE) mechanisms;Sharma;J. Mol. Struct.,2021
3. Carbohydrate-based fluorometric and colorimetric sensors for Cu2+ ion recognition;Hazarika;C. R. Chim.,2019
4. Recent advancement on chromo-fluorogenic sensing of aluminum(III) with Schiff bases;Mohanty;Trends Environ. Anal. Chem.,2022
5. Colorimetric and fluorescent Schiff base sensors for trace detection of pollutants and biologically significant cations: a review (2010–2021);Kumar;Microchem. J.,2022
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