| Literature DB >> 35495983 |
Xue-Ting Wang1,2, Wei Wei1,2, Kai Zhang1,2, Shao-Wu Du3.
Abstract
A series of isostructural 3D lanthanide metal-organic frameworks (LnMOFs), with the formula n(H3O)[Ln(L)(H2O)] n ·nH2O (Ln = Gd 1, Eu 2 and Tb 3, H4L = 3,5,3',5'-oxytetrabenzoic acid), have been successfully synthesized by solvothermal reactions. Single-crystal X-ray diffraction analysis reveals that 1-3 are constructed from wave-like Ln-carboxylate chains which are further connected by the ligands to form 3D channel-type frameworks. Further experiments suggest that 3 is thermally stable up to 322 °C and exhibits outstanding chemical stability in aqueous solutions with the pH ranging from 3 to 11. Significantly, 3 can be utilized for the first time to detect malachite green (a synthetic antibiotic to cure saprolegniasis) in aqueous media even in the presence of other interfering antibiotics, with a high sensitivity (K sv = 8.33 × 104 M-1), low detection limit (DL = 0.25 μM) and good recyclability. On a more practical note, we found that the luminescence intensity of 3 showed almost no response to pH changes (pH 3-11), allowing steady sensing in real samples such as river water, simulated human serum and urine with satisfactory recoveries and RSD. This journal is © The Royal Society of Chemistry.Entities:
Year: 2020 PMID: 35495983 PMCID: PMC9049688 DOI: 10.1039/c9ra10870j
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Fig. 1(a) Coordination environment of the Tb3+ ion in 3; (b) coordination modes of the ligand; (c) 1D wave-like chain viewed along the c direction; (d) 3D channel-type framework viewed along the b direction. Hydrogen atoms are omitted for clarity. Colour code: Tb, sky blue; O, red; C, grey.
Fig. 2XRD patterns of 3 after immersion in aqueous solutions with pH ranging from 3 to 11 and in a MG solution.
Fig. 3(a) Emission spectra of 3 dispersed in aqueous solutions with different pH values; (b) emission spectra of 3 dispersed in aqueous solutions with different antibiotics.
Fig. 4(a) Emission spectra of 3 dispersed in aqueous solutions upon the addition of MG; (b) sensing ability of 3 toward MG in the presence of other interfering antibiotics; (c) five cycle tests of 3 for sensing MG.
Analysis of MG in real samples
| Samples | Added (μM) | Founded (μM) | RSD(%) | Recovery (%) |
|---|---|---|---|---|
| River water | 6.999 | 7.000 | 8.083 | 100.0 |
| 9.341 | 10.00 | 10.93 | 107.0 | |
| 30.23 | 30.00 | 8.066 | 99.24 | |
| Serum | 5.399 | 7.000 | 3.863 | 107.9 |
| 10.56 | 10.00 | 11.00 | 105.6 | |
| 30.98 | 30.00 | 4.145 | 103.3 | |
| Urine | 7.260 | 7.000 | 2.754 | 103.7 |
| 10.18 | 10.00 | 3.110 | 101.8 | |
| 32.30 | 30.00 | 7.589 | 107.6 |