Synthesis, Crystal Structures of Gadolinium(III) and Erbium(III) Complexes Derived from Pyridine-2,6-Dicarboxylic Acid and Fluorescent Sensing of Picric Acid

Two new complexes of gadolinium(III) and erbium(III) with pyridine-2,6-dicarboxylic acid (H 2 Pydc),{Na 3 [Gd(Pydc) 3 ]·2H 2 O} n ( I ) and [Er(HPydc) 3 ]·10H 2 O ( II ), were prepared and their crystal structures were determined by X-ray crystallography (CIF files CCDC nos. 940633 ( I ) and 872068...

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Veröffentlicht in:Russian journal of coordination chemistry 2021, Vol.47 (1), p.95-104
Hauptverfasser: Sharif, S., Zaheer, S., Mumtaz, M. W., Sahin, O., Ahmad, S., Zulfiqar, S., Adnan, A., Khan, I. U.
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Sprache:eng
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Zusammenfassung:Two new complexes of gadolinium(III) and erbium(III) with pyridine-2,6-dicarboxylic acid (H 2 Pydc),{Na 3 [Gd(Pydc) 3 ]·2H 2 O} n ( I ) and [Er(HPydc) 3 ]·10H 2 O ( II ), were prepared and their crystal structures were determined by X-ray crystallography (CIF files CCDC nos. 940633 ( I ) and 872068 ( II )). The gadolinium atom in I is nine-coordinate (GdN 3 O 6 ) and exhibits a tricapped trigonal prismatic geometry having 14 triangular faces. The Pydc ligand adopts chelating and, μ 3 - and μ 5 -bridging coordination modes. The 1D chains are further joined by Na atoms to generate a 3D coordination polymer. The structure is additionally stabilized by H-bonding. The Erbium polyhedron in II is also a tricapped trigonal prism (ErN 3 O 6 ). The HPydc anions in II behave as tridentate chelating ligands. The complex molecules are connected to each other through hydrogen bonding interactions to form a three-dimensional network. Fluorescence titration experiments for complex II displayed highly sensitive fluorescence quenching efficiency of 98.3% against picric acid.
ISSN:1070-3284
1608-3318
DOI:10.1134/S1070328420120076