Issue 25, 2024

Methyl methacrylate-modified polystyrene microspheres: an effective strategy to enhance the fluorescence of Eu-complexes

Abstract

The in vitro detection applications of europium complex-doped microspheres mainly rely on strong fluorescence intensity and a well-defined morphology. In this work, using methyl methacrylate-modified polystyrene microspheres has been proven an effective strategy to enhance the fluorescence and morphology of Eu-complexes. The experimental results showed that the modification resulted in the formation of a porous structure within the polystyrene microspheres, enhancing the doping uniformity and facilitating a more significant accumulation of fluorescent molecules. Furthermore, because of their encapsulation ability, microspheres efficiently confine the fluorescent molecules within them. In addition, the nano-scale porous structure endowed the microspheres with enhanced properties without compromising solvent swelling capability, thereby significantly boosting the fluorescence performance of porous PSMMA. In lateral flow immunoassays (LFIAs), PSMMA-Eu microspheres were effectively utilized to detect fentanyl with exceptional sensitivity by capitalizing on these benefits, capable of detecting concentrations as low as 0.10 ng mL−1. This technology has significant potential for rapid point-of-care screening and clinical applications.

Graphical abstract: Methyl methacrylate-modified polystyrene microspheres: an effective strategy to enhance the fluorescence of Eu-complexes

Supplementary files

Article information

Article type
Paper
Submitted
11 Apr 2024
Accepted
23 May 2024
First published
12 Jun 2024

Phys. Chem. Chem. Phys., 2024,26, 17622-17630

Methyl methacrylate-modified polystyrene microspheres: an effective strategy to enhance the fluorescence of Eu-complexes

Y. Yuan, Y. Wang, P. Awasthi, W. Dong, D. Chen, X. Qiao, Z. Wang, G. Qian and X. Fan, Phys. Chem. Chem. Phys., 2024, 26, 17622 DOI: 10.1039/D4CP01454E

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