2021
DOI: 10.1002/adom.202102267
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Synthesis of Two New Dinuclear Lanthanide Clusters and Visual Bifunctional Sensing Devices Based on the Eu Cluster

Abstract: The development of visual and multifunctional sensors, and further the fabrication of portable sensing devices is of great importance. Herein, two dinuclear lanthanide clusters are designed, and their accurate molecules are determined to be [Ln2(DFBA)6(dmp)2(H2O)2] (Ln3+ = Eu3+ (1‐Eu) or Tb3+ (1‐Tb), HDFBA = 3,4‐difluorobenzoic acid, dmp = 4,7‐dimethyl‐1,10‐phenanthroline), by single‐crystal X‐ray diffraction. Interestingly, 1‐Eu shows rapid detection of ferrous ions (Fe2+) and acetylacetone (acac), with the l… Show more

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Cited by 32 publications
(12 citation statements)
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“…The photos are in line with their CIE results ( Tb 2 Tb 2 : 0.3508, 0.5687; Eu 2 Eu 2 : 0.668, 0.3303) (Figure d). The luminescence lifetimes of Tb 2 Tb 2 and Eu 2 Eu 2 monitored at 543 and 615 nm are 0.317 and 0.353 ms (Figure c), respectively . Luminescence quantum yields for Tb 2 Tb 2 and Eu 2 Eu 2 are 10.30 and 8.04%, respectively.…”
Section: Resultsmentioning
confidence: 96%
See 1 more Smart Citation
“…The photos are in line with their CIE results ( Tb 2 Tb 2 : 0.3508, 0.5687; Eu 2 Eu 2 : 0.668, 0.3303) (Figure d). The luminescence lifetimes of Tb 2 Tb 2 and Eu 2 Eu 2 monitored at 543 and 615 nm are 0.317 and 0.353 ms (Figure c), respectively . Luminescence quantum yields for Tb 2 Tb 2 and Eu 2 Eu 2 are 10.30 and 8.04%, respectively.…”
Section: Resultsmentioning
confidence: 96%
“…The luminescence lifetimes of Tb 2 Tb 2 and Eu 2 Eu 2 monitored at 543 and 615 nm are 0.317 and 0.353 ms (Figure 4c), respectively. 70 Luminescence quantum yields for Tb 2 Tb 2 and Eu 2 Eu 2 are 10.30 and 8.04%, respectively. FT-IR spectra show that the absorption peaks of the carbonyl group in the two lanthanide clusters of Tb 2 Tb 2 and Eu 2 Eu 2 are red-shifted, proving the ligand had coordinated with the lanthanide ions successfully (Figure S2).…”
Section: T H I S C O N T E N T Imentioning
confidence: 95%
“…The two bands in the excitation spectrum of TbMOF originate from the two ligands of phen and BTDB, and the small band at about 290 nm originates from phen . At the optimal excitation at 352 nm, TbMOF emits four characteristic strong linear emission peaks in 450–650 nm, which are due to 5 D 4 → 7 F 6 , 5 D 4 → 7 F 5 , 5 D 4 → 7 F 4 , and 5 D 4 → 7 F 3 transitions at 480, 540, 575, and 610 nm, respectively (Figure a), showing high-purity green luminescence (CIE: 0.2146, 0.4743; Figure d). The strongest emission (540 nm) of the 5 D 4 → 7 F 5 transition is selected to monitor its luminescence lifetime, which shows a single exponential decay function and a relatively long luminescence lifetime of 0.348 ms (Figure )e. The photoluminescence quantum yield of TbMOF is 14.64%.…”
Section: Resultsmentioning
confidence: 99%
“…At present, fluorescent sensors have received much attention because of the application in the detection of analytes with a rapid response, and high sensitivity and selectivity. 1–5 The study of analytical technologies for the detection of biological species is significant in medical science. Guanosine-5-monophosphate (GMP) is an important nucleotide, which acts as an intermediate in the synthesis of nucleic acids and plays a vital role in metabolic processes.…”
Section: Introductionmentioning
confidence: 99%