Naked-eye detection of pollutants through visible-light-induced polymerization

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초록

I developed an approach for signal amplification using a visible-light-induced polymerization, initiated by a switchable photoredox catalyst. Fluorescein derivatives as photoredox catalysts are able to initiate photopolymerization and rapidly form hydrogel under visible light. Moreover, they exhibit selective chromogenic and fluorogenic responses to target pollutants in the visible light. In this work, we employed fluoresceins as a switchable photoredox catalyst for the generation of a colorimetric readout of either Hg(II) ions or H2O2 via the visible-light-induced polymerization of N-vinylpyrrolidone (VP) and poly(ethylene glycol) diacrylate (PEGDA) under aerobic conditions. This photopolymerization-based signal amplification yielded about 20 times higher sensitivity than UV-Vis spectrometry and enabled the naked-eye detection of Hg(II) ions with concentrations down to 0.1 μM. In addition, 10 μM of the catalyst allows a successful detection of H2O2 down to 20 μM. We envision that this strategy will be highlighted by mechanistic elucidation of photoredox catalysis and colorimetric sensing of hazardous substances. © 2024 18th Conference of the International Society of Indoor Air Quality and Climate, INDOOR AIR 2024 - Conference Program and Proceedings. All rights reserved.

키워드

Colorimetric sensors; hydrogel; polymerization-based signal amplification; visible-induced photoredox catalysis
제목
Naked-eye detection of pollutants through visible-light-induced polymerization
저자
Lee, Jungkyu
발행일
2024
유형
Conference paper