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Smartphone-Based Quantitative Measurement of Cu(2+): Fluorescent Turn-on Chemosensor via Radical Cation Formation.

PubMed
Authors: Gil D, Choi B, Kim C

Year

2025

Paper ID

9587

Status

Peer-reviewed

Abstract Read

~2 min

Abstract Words

182

Citations

N/A

Abstract

We report a unique radical cation formation-based fluorescent chemosensor (E)-N'-(4-(diphenylamino)benzylidene)thiophene-2-carbohydrazide (DBTC) that quantitatively determines Cu based on the RGB model using a smartphone. DBTC exhibited a weak turquoise fluorescence due to fluorescence suppression by amide isomerization. When Cu was added into DBTC, it showed strong light blue fluorescence with a high quantum yield [Formula: see text] = 0.470. The detection limit of Cu was determined to be 0.40 µM at the concentration range of 0-7.5 µM. In addition, the detection mechanism of DBTC for Cu was demonstrated to be an oxidative cyclization reaction through H NMR titration, ESI-MS analysis, and DFT calculation. Remarkably, DBTC could be applied to the quantitative measurement of Cu using a smartphone and RGB analysis. The detection limit was calculated to be 0.05 µM, which is the lowest detection limit among chemosensors that could detect Cu through smartphone-based fluorescence measurements. Additionally, spike and recovery experiments conducted with different concentrations of Cu showed good recovery values. DBTC exhibited its potential as a chemosensor for determining Cu through the application of a smartphone-based platform capable of real-time monitoring.

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  • We report a unique radical cation formation-based fluorescent chemosensor (E)-N'-(4-(diphenylamino)benzylidene)thiophene-2-carbohydrazide (DBTC) that quantitatively determines...

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