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Updated: May 12, 2025

Untargeted Metabolomics from Biological Sources Using Ultraperformance Liquid Chromatography-High Resolution Mass Spectrometry UPLC-HRMS
Published on: May 20, 2013
Reductive pathway profiling of chemical warfare agent simulant in complex matrices using hydrothermally engineered
Santhiyagu Sahayaraj Rex Shanlee1, Chandini Ragumoorthy1, Shen-Ming Chen1
1Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, No.1, Section 3, Chung-Hsiao East Road, Taipei, 106, Taiwan.
Abstract:
The detection of chemical warfare agent (CWA) simulants in complex matrices remains a critical challenge for safeguarding environmental and public health. In this study, we report the development of a highly sensitive and selective electrochemical sensor utilizing hydrothermally engineered Y2NiMnO6 (YNMO), a mixed-valent double perovskite, for the detection of paraoxon ethyl (PXE), a representative CWA simulant. The YNMO-modified glassy carbon electrode (YNMO/GCE) exhibited exceptional electrocatalytic performance, owing to the synergistic redox activity of Ni2+/Ni3+ and Mn3+/Mn4+ redox couples that significantly enhanced interfacial charge transfer kinetics. The sensor achieved an impressively low detection limit of 0.08 nM and a quantification limit of 5 nM, with a wide linear detection range spanning from 0.19 microM to 2147.51 microM. It demonstrated high analytical robustness, with excellent repeatability (relative standard deviation < 2.57 %), reproducibility (inter-electrode variation <1.7 %), and operational stability over a 30-day testing period. Notably, the sensor retained functionality under complex conditions, exhibiting strong anti-interference capability against structurally related organophosphates and coexisting environmental or biological species. Real-sample analyses in diverse matrices including river, pond, and tap water; synthetic saliva and sweat; and various food items yielded high recovery rates (98.6-101.8 %), confirming the sensor's practical applicability.
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