Four isostructural lanthanide metal–organic frameworks: luminescence properties and fluorescence sensing for Fe3+ and Cr2O72− ions†
Abstract
Four novel isostructural lanthanide metal–organic frameworks (Ln-MOFs), [Ln2(L)3(DMF)2(H2O)4]·2DMF (Ln = Eu(1), Tb(2), Gd(3) and Y(4); H2L = 4,4′-([2,4′-bipyridine]-4,6-diyl)dibenzoic acid; DMF = N,N-dimethylformamide), were solvothermally synthesized. These Ln-MOFs were characterized by IR spectroscopy, thermogravimetry, and powder X-ray diffraction methods. The single-crystal analysis reveals that in 1, three Eu3+ centres are linked together by two bidentate bridging carboxylate groups from two L2− ligands to form trinuclear secondary building units, which further construct a three-dimensional framework. These Ln-MOFs exhibit selective sensing of Fe3+ ions and Cr2O72− anions with better quenching constant values and lower detection limits. According to the tests, 3 and 4 show higher sensitivity and selectivity towards Fe3+ ions, but 2 reveals lower sensitivity and selectivity towards Fe3+ ions. Moreover, 1–4 display higher sensitivity and selectivity towards Cr2O72− anions. Notably, 3 is a rare Gd-MOF sensor for Fe3+ ions, and 4 is a rare Y-MOF sensor for Cr2O72− anions. Besides, the four Ln-MOFs can remain stable during the tests. The fluorescence quenching can be attributed to the competitive light absorption and the energy transformation between Ln-MOFs and Fe3+/Cr2O72− ions. Furthermore, the luminescence properties of Ln-MOFs have also been investigated.