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Exploring Coumarin-Based Boron Emissive Complexes as Temperature Thermometers in Polymer-Supported Materials
Gonçalo Pedro1, Frederico Duarte1, Dmitrii A Cheptsov2
1BIOSCOPE Research Group, LAQV-REQUIMTE, Chemistry Department, NOVA School of Science and Technology, FCT NOVA, Universidade NOVA de Lisboa, 2829-516 Caparica, Portugal.
New coumarin-based boron complexes function as effective temperature probes. These materials exhibit excellent fluorescent responses and reversibility when incorporated into polymer matrices for sensing applications.
Area of Science:
- Materials Science
- Photochemistry
- Supramolecular Chemistry
Background:
- Development of novel fluorescent materials for sensing applications is crucial.
- Boron complexes offer unique photophysical properties for advanced material design.
- Coumarin derivatives are widely explored for their luminescence characteristics.
Purpose of the Study:
- To design and synthesize novel coumarin-based boron complexes (L1, L2, L3).
- To evaluate their photophysical properties in solution and solid states.
- To investigate their potential as temperature probes when incorporated into polymeric matrices.
Main Methods:
- Synthesis of coumarin-based boron complexes.
- Photophysical characterization (absorption, emission, quantum yield) in various solvents.
- Incorporation into polymeric matrices.
- Evaluation as temperature sensors.
- Computational studies using DFT/B3LYP.
Main Results:
- Compound L1 showed the highest fluorescence quantum yield (33%) in solution with positive solvatochromism.
- L1 exhibited a colorimetric response to anions due to deprotonation.
- Fluorescence quenching at higher temperatures was attributed to torsional vibrations.
- Incorporation into polymers enhanced emission via aggregation.
- The dye@doped polymers demonstrated excellent, reversible temperature sensing over 15 cycles.
Conclusions:
- Coumarin-based boron complexes are promising candidates for fluorescent temperature probes.
- Polymer-incorporated complexes offer enhanced emission and stable sensing capabilities.
- The developed materials show potential for practical applications in temperature sensing.
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