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A sensitive OFF–ON–OFF fluorescent probe for the cascade sensing of Al3+ and F− ions in aqueous media and living cells
Authors:Lingjie Hou  Wenting Liang  Chenhua Deng  Caifeng Zhang  Bo Liu  Shaomin Shuang  Yu Wang
Institution:Department of Chemistry, Taiyuan Normal University, Jinzhong 030619 P. R. China ; Department of Chemistry, Institute of Environmental Science, Shanxi University, Taiyuan 030006 P. R. China.; Humic Acid Engineering and Technology Research Center of Shanxi Province, Jinzhong 030619 P. R. China ; National Institutes for Food and Drug Control, Beijing 100050 P. R. of China
Abstract:A simple Schiff-base ligand 2-hydroxy-1-naphthaldehyde semicarbazone (HNS) was synthesized and characterized. Based on the combined effect of inhibition of CH Created by potrace 1.16, written by Peter Selinger 2001-2019 N isomerization and chelation-enhanced fluorescence (CHEF), HNS functions as a fluorescence “turn on” sensor for Al3+ in buffered aqueous media. Based on the strong affinity of Al3+ to F ions, the in situ generated Al3+–HNS complex can also be utilized as an effective chemosensor for F sensing by metal displacement approach, ensuing quenching of fluorescence by the reversible return of HNS from Al3+–HNS complex. Thus a method using a single probe for the detection of both Al3+ and F ions is developed. The system exhibits high selectivity and sensitivity for Al3+ and F ions and the detection limits were found to be as low as 6.75 × 10−8 M and 7.89 × 10−7 M, respectively. Furthermore, the practical applicability of this probe has been examined in living cells.

A simple Schiff-base ligand 2-hydroxy-1-naphthaldehyde semicarbazone (HNS) was synthesized and applied to the sequential sensing of Al3+ and F ions in aqueous media and live cells.
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