Barnali Naskar
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A versatile chemosensor for detection of Al3+ and Picric acid (PA) in aqueous solution
Developing chemosensors for efficient detection of Al3+ and picric acid in water is highly demanding and yet challenging. In this paper, we have demonstrated the potential of a probe, 6,6'-(1E,1'E)-(2-hydroxypropane-1,3-diyl)bis(azan-1-yl-1-ylidene)bis(methan-1-yl-1 ylidene)bis(2-methoxyphenol) (H2Vm) as “switch-on” Al3+ responsive fluorescence chemosensor is water.
A Schiff base platform: structures, sensing of Zn(II) and PPi in aqueous medium and anticancer activity
A reaction of N ,N -bis(3-methoxysalicylidene) diethylenetriamine (H Vd) and Zn(NO ) ·6H O, ZnBr , ZnI and Cd(NO ) ·4H O in a methanol solution led to zinc and cadmium complexes of different nuclearities, [Zn (Vd·H) (X) ]·CH OH (X = NO , Br, I) [1a, 1b and 1c] and Cd (Vd) (NO ) (2). In 1(a–c), two H Vd ligands bridge the two metal centers whereas in 2, they provide sideways support to two terminal Cd ions, providing an all-oxygen envelope to the central Cd ion.
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