Naked-eye detection of Hg() ions by visible light-induced polymerization initiated by a Hg()-selective photoredox catalyst
We developed a novel strategy for signal amplification using a visible light-induced photopolymerization, initiated by a selective turn-on photoredox catalyst. As photoredox catalysts, fluorescein derivatives are able to initiate photopolymerization and rapidly form a polymeric hydrogel in the prese...
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Published in | Polymer chemistry Vol. 12; no. 7; pp. 97 - 974 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Cambridge
Royal Society of Chemistry
23.02.2021
|
Subjects | |
Online Access | Get full text |
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Summary: | We developed a novel strategy for signal amplification using a visible light-induced photopolymerization, initiated by a selective turn-on photoredox catalyst. As photoredox catalysts, fluorescein derivatives are able to initiate photopolymerization and rapidly form a polymeric hydrogel in the presence of oxygen under visible light. Moreover, they exhibit selective chromogenic and fluorogenic responses to transition metal ions in the visible region of light. In this work, we employed fluorescein hydrazide as a switchable photoredox catalyst for the generation of a colorimetric readout of Hg(
ii
) ions
via
the visible light-induced photopolymerization of
N
-vinylpyrrolidone and poly(ethylene glycol) diacrylate under aerobic conditions. Compared to ultraviolet-visible (UV-Vis) spectroscopy, this photopolymerization-based signal amplification yielded about 20 times higher sensitivity and enabled the naked-eye detection of Hg(
ii
) ions with concentrations down to 0.1 μM.
A selective turn-on photoredox catalyst extends the applications of visible light-induced polymerization. |
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Bibliography: | and characterizations, and supporting table and figures. See DOI 1 Electronic supplementary information (ESI) available: Detailed experimental procedures, including the synthesis of compound 10.1039/d0py01616k |
ISSN: | 1759-9954 1759-9962 |
DOI: | 10.1039/d0py01616k |