Lanthanide Coordination Polymers as Photoluminescent Materials for Spectral Modulation in Polymer Film

- 343915
Poster Presentation
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Abstract

The development of materials capable of converting ultraviolet radiation into spectrally useful visible light is promising for advanced photonic and agricultural applications. In this study, [Ln(OAc)(tta)₂] coordination polymers (Ln = Eu³⁺, Gd³⁺, and Tb³⁺; tta = 2-thenoyltrifluoroacetate) were synthesized and characterized by FTIR spectroscopy, single-crystal X-ray diffraction, thermogravimetric analysis, and photophysical techniques. The compounds were obtained as needle-shaped crystals in 59–70% yield. Eu³⁺ and Tb³⁺ derivatives exhibited characteristic red and green emissions, respectively, whereas Gd³⁺ served as a reference for investigating ligand-centered excitation and energy-transfer processes. Excitation and emission spectra, quantum yields, and luminescence lifetimes were evaluated to establish structure–property relationships. Incorporation of [Eu(OAc)(tta)₂] into an EVA film remarkably enhanced the emission quantum yield, indicating reduced non-radiative deactivation. These results highlight lanthanide coordination polymers as promising spectral-conversion materials combining tunable luminescence and polymer-film processability for emerging light-modulating applications in protected agriculture and advanced photonic technologies with clear, notable technological potential.

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Institutions
  • 1 Federal University of Rio de Janeiro
  • 2 Institute of Chemistry - UNICAMP
  • 3 IQ-UNICAMP
  • 4 Unicamp
Track
  • TL04 - Rare Earth Chemistry and Applications
Keywords
coordination polymers
spectral modulation
photoluminescence