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Pb-based metal organic framework as substrate: Chemical vapor generation-visual/smartphone colorimetric analytical system for sensitive and selective detection of sulfide ion in water and beers. | LitMetric

Pb-based metal organic framework as substrate: Chemical vapor generation-visual/smartphone colorimetric analytical system for sensitive and selective detection of sulfide ion in water and beers.

Food Chem X

Key Laboratory of the Evaluation and Monitoring of Southwest Land Resources (Ministry of Education), College of Chemistry and Material Science, Sichuan Normal University, Chengdu, Sichuan 610068, China.

Published: October 2024

AI Article Synopsis

  • A colorimetric system using a smartphone was developed to detect sulfide ions (S) by converting them to hydrogen sulfide (HS) through a chemical vapor generation (CVG) process for improved sensitivity and selectivity.
  • The formation of lead sulfide (PbS) from HS caused test paper to turn black, allowing for visual detection with results as low as 0.05 μg/mL under smartphone mode and 0.2 μg/mL under visual mode.
  • This system, demonstrating an effectiveness of 97% to 111% recovery, was successfully applied to analyze sulfide levels in beer and water samples, showcasing its potential as a miniaturized and user-friendly detection method

Article Abstract

A visual/smartphone colorimetric system was developed for the sensitive and selective detection of sulfide ion (S) using chemical vapor generation (CVG) as a gaseous sampling technique. S in samples were converted into HS after the addition of HSO, which separated from the solution during CVG process, ensuring high efficiency of vapor generation (sensitivity) and eliminated interferences (selectivity). The HS was subsequently reacted with Pb-BTC and PbS was thus formed, causing the test paper turned to black. It was utilized for the detection of S by visual/smartphone colorimetric system. Detectable limits of 0.05 μg/mL and 0.2 μg/mL were obtained under smartphone mode and visual mode, respectively. Furthermore, this colorimetric system was successfully used for the analysis of S in several beer samples and water samples, with recoveries ranging 97 %-111 %. This system represents a potential miniaturized, easy used and high-effective method for rapid and on-site detection of S.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11402409PMC
http://dx.doi.org/10.1016/j.fochx.2024.101767DOI Listing

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