A portable dual‐ratiometric fluorescent and colorimetric probe for ClO − sensing across environmental samples, smartphone platform and cabbage

Abstract A portable dual‐ratiometric fluorescent and colorimetric probe DBHN (( E )‐N′‐(4‐(diphenylamino)benzylidene)‐3‐hydroxy‐2‐naphthohydrazide) was designed for sensing ClO − . DBHN showed both a ratiometric fluorescence change from green to blue and a colorimetric change from pale yellow to colorless in the presence of ClO − . DBHN exhibited good limits of detection of 27.56 μM in fluorescence method and 4.46 μM in UV–vis method. DBHN enabled reliable ClO − detection over a pH range of 6–10 in fluorescence change and 4–9 in UV–vis change. DBHN effectively detected ClO − in real water samples, including drinking, tap, and river water, and was successfully applied to ClO − detection using test‐strip assays. In smartphone‐based analysis, DBHN enabled quantitative detection of ClO − with low limits of detection (27.38 μM in fluorescence and 13.30 μM in colorimetry) and reliably detected ClO − in real water samples. Furthermore, DBHN showed successful fluorescence imaging in Napa cabbage. The recognition mechanism of DBHN toward ClO − was proposed to be an imine bond cleavage reaction by electrospray ionization (ESI)‐mass spectrometry (MS) and density functional theory (DFT) calculations.

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Publication Details

Journal
Bulletin of the Korean Chemical Society
Published
2026-10-09
DOI
https://doi.org/10.1002/bkcs.70228
Primary Topic
Molecular Sensors and Ion Detection
Type
article
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article

A portable dual‐ratiometric fluorescent and colorimetric probe for ClO − sensing across environmental samples, smartphone platform and cabbage

Hyeonji Park, Cheal Kim, Soyeon Kim
Bulletin of the Korean Chemical Society
Molecular Sensors and Ion Detection
article

A portable dual‐ratiometric fluorescent and colorimetric probe for ClO − sensing across environmental samples, smartphone platform and cabbage

Hyeonji Park, Cheal Kim, Soyeon Kim
article en

Abstract

Abstract A portable dual‐ratiometric fluorescent and colorimetric probe DBHN (( E )‐N′‐(4‐(diphenylamino)benzylidene)‐3‐hydroxy‐2‐naphthohydrazide) was designed for sensing ClO − . DBHN showed both a ratiometric fluorescence change from green to blue and a colorimetric change from pale yellow to colorless in the presence of ClO − . DBHN exhibited good limits of detection of 27.56 μM in fluorescence method and 4.46 μM in UV–vis method. DBHN enabled reliable ClO − detection over a pH range of 6–10 in fluorescence change and 4–9 in UV–vis change. DBHN effectively detected ClO − in real water samples, including drinking, tap, and river water, and was successfully applied to ClO − detection using test‐strip assays. In smartphone‐based analysis, DBHN enabled quantitative detection of ClO − with low limits of detection (27.38 μM in fluorescence and 13.30 μM in colorimetry) and reliably detected ClO − in real water samples. Furthermore, DBHN showed successful fluorescence imaging in Napa cabbage. The recognition mechanism of DBHN toward ClO − was proposed to be an imine bond cleavage reaction by electrospray ionization (ESI)‐mass spectrometry (MS) and density functional theory (DFT) calculations.

Bulletin of the Korean Chemical Society
Seoul National University of Science and Technology (KR)
Openalex Percentile: Top 27%
Molecular Sensors and Ion Detection
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A portable dual‐ratiometric fluorescent and colorimetric probe for ClO − sensing across environmental samples, smartphone platform and cabbage — Hyeonji Park, Cheal Kim, et al. · Bulletin of the Korean Chemical Society (2026) | TGRS Research Map | TGRS