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February 5, 2026Inorganic Chemistry4 citations

Mastering Fluorescence through a Rare-Earth Ion Functional Switch in Isostructural Bimetallic MOFs

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JZJiayi ZhuMinnan University of Science and TechnologyYGYanhui GuoMinnan University of Science and TechnologyYDYumei DaiMinnan University of Science and Technology

Key Points

  • This research aims to investigate how rare-earth ions influence fluorescence properties in metal-organic frameworks.
  • Synthesis of two isostructural bimetallic MOFs with La3+ and Eu3+ as metal nodes.
  • Conducting photophysical analyses to assess fluorescence characteristics.
  • Evaluating responses to norfloxacin in different complexes.
  • The choice of rare-earth ion results in distinct fluorescence behaviors.
  • Complex 1 shows fluorescence turn-on in the presence of norfloxacin.
  • Complex 2 exhibits turn-off quenching when exposed to norfloxacin.

Abstract

The fluorescence properties of metal-organic frameworks (MOFs) are traditionally influenced by organic ligands, making the role of metal nodes, especially rare-earth centers in isostructural MOFs variants, a relatively understudied area. Herein, this study reports two isostructural bimetallic MOFs with identical organic ligand components but distinct rare-earth centers (La3+ and Eu3+). Photophysical analyses reveal that the choice of rare-earth ion dictates divergent fluorescent behaviors, including distinct quenching pathways and emission intensities. Significantly, these differences enable selective sensing: in the presence of norfloxacin, complex 1 exhibits a fluorescence turn-on response, while complex 2 demonstrates turn-off quenching. These findings confirm that rare-earth centers can act as a critical "functional switch" to modulate MOF fluorescence, offering a targeted strategy for the design of advanced fluorescent materials.

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Cite This Study

Zhu et al. (2026) studied this question.

synapsesocial.com/papers/698434f9f1d9ada3c1fb3cebhttps://doi.org/10.1021/acs.inorgchem.5c05719
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