Novel Application of Metal–Organic Frameworks as Efficient Sorbents for Solid-Phase Extraction of Chemical Warfare Agents and Related Compounds in Water Samples
Jakub Woźniak, Stanisław Popiel, Jakub Nawała, Barbara Szczęśniak, Jerzy Choma, Dariusz Zasada

TL;DR
This study explores using metal-organic frameworks to extract chemical warfare agents and related compounds from water samples, showing promising selectivity and efficiency.
Contribution
The novel use of specific MOFs for solid-phase extraction of CWAs and related compounds in water is demonstrated.
Findings
MOFs showed high selectivity for compounds with aromatic rings or spread spatial structures.
The best recoveries were achieved for DPAA, CAP, and malathion.
The method was successfully applied to environmental water samples from the Baltic Sea.
Abstract
In this work, we test metal–organic frameworks (MOFs) as sorbents in the solid-phase extraction (SPE) technique to determine chemical warfare agents (CWAs) and their related compounds in water samples. During this study, we used 13 target compounds to test the selectivity of MOFs thoroughly. Three MOFs were used: MIL-100(Fe), ZIF-8(Zn), and UiO-66(Zr). The obtained materials were characterized using FT-IR/ATR, SEM, and XRD. CWA’s and related compounds were analyzed using gas chromatography coupled with tandem mass spectrometry (GC-MS/MS). The effect of the type of elution solvent and the amount of sorbent (MOFs) in the column on the efficiency of the conducted extraction were verified. The LOD ranged from 0.04 to 7.54 ng mL−1, and the linearity range for the analytes tested extended from 0.11/22.62 (depending on the compound) to 1000 ng mL−1. It was found that MOFs showed the most…
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Taxonomy
TopicsMetal-Organic Frameworks: Synthesis and Applications · Molecular Sensors and Ion Detection · Sulfur Compounds in Biology
