Dual-ligand-functionalized dodeca-nuclear lanthanide–tungsten-cluster incorporated selenotungstates and fluorescence detection of dipicolinic acid (an anthrax biomarker)†
Abstract
A series of rigid–flexible-ligand functionalized dodeca-nuclear lanthanide–tungsten heterometal cluster incorporated ring-shaped selenotungstates [H2N(CH3)2]16Na2[Ln4(H2O)6(HPZDA)2(HFMA)2W8O21][B-α-SeW9O33]4·29H2O [Ln = Ce3+ (1), Pr3+ (2), Nd3+ (3); H2PZDA = 2,3-pyrazine dicarboxylic acid, H2FMA = fumaric acid] and [H2N(CH3)2]14Cs2Na2[Eu4(H2O)6(HPZDA)2(HFMA)2W8O21][B-α-SeW9O33]4·30H2O (4) were prepared by a cooperative strategy of rigid and flexible ligands. The polyanion skeletons of 1–4 comprise an inorganic–organic hybrid dodeca-nuclear [Ln4(H2O)6(HPZDA)2(HFMA)2W8O21]14+ heterometallic cluster surrounded by four trivacant Keggin [B-α-SeW9O33]8− subunits in a rectangle-like arrangement. Based on its fluorescence properties, 4 was used as a fluorescent probe for detecting an anthrax biomarker dipicolinic acid (DPA) with a low limit of detection, and excellent selectivity and anti-interference. The possible fluorescence enhancement mechanism of 4 in the process of detecting DPA may stem from energy transfer from DPA to Eu3+ ions in 4, which can be confirmed by decay lifetime measurements of 4 in H2O and D2O with and without DPA, and a positive signal of the partial substitution of H2O ligands on Eu3+ ions by DPA ligands. This work proposes a feasible cooperative strategy of rigid and flexible ligands for constructing new structural types of polyoxometalate hybrids, and also provides some meaningful insights into efficient biomolecule detection by utilizing polyoxometalate-based luminescence materials.
- This article is part of the themed collection: FOCUS: Metal and Metal-Containing Clusters