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- W2560562021 abstract "Recently, most of fluorescent sensors have been focused on in diluted solutions because π-π stacking of traditional fluorescent materials would quench their emissions in solid state, and meanwhile some fluorescent materials in aggregation were reported as chemosensors to detect target analytes although they always were involved in photonic and electronic devices. Fluorescent probes in both the diluted solutions and aggregation have scarcely been developed in reported works. In this study, we report a novel pyridinyl-organoboron complex as a probe to detect mercury ions (Hg2+) in diluted solution and gaseous acid/base in aggregation. The as-synthesized probe with strong fluorescence contained a pyridine unit, as the reactive site of both Hg2+ and gaseous acid in the environmental monitoring. Upon the addition of Hg2+, the fluorescence ratio of I480/I515 was changed immediately accompanying with the color variation from cyan to green under a UV lamp. On the other hand, the complex probe was prepared as a film on a glass pallet for the detection of gaseous acid with the emissive color evolution from yellow to orange-red. Interestingly, the film sensor for acid/base gas had a reversible property with 10 cycles at least due to its much higher photostability." @default.
- W2560562021 created "2016-12-16" @default.
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- W2560562021 date "2017-05-01" @default.
- W2560562021 modified "2023-10-02" @default.
- W2560562021 title "A pyridinyl-organoboron complex as dual functional chemosensor for mercury ions and gaseous acid/base" @default.
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- W2560562021 doi "https://doi.org/10.1016/j.snb.2016.12.041" @default.
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