Microextraction by packed sorbent of selected pesticides in coffee samples employing ionic liquids supported on graphene nanosheets as extraction phase

Anal Bioanal Chem. 2022 Jan;414(1):413-423. doi: 10.1007/s00216-021-03245-3. Epub 2021 Mar 25.

Abstract

This paper describes the synthesis, characterization, and use of ionic liquids supported on silica, functionalized with graphene oxide through covalent bonding (ILz/Si@GO), as sorbents for microextraction by packed sorbent (MEPS). Seven selected pesticides (diazinon, heptachlor, aldrin, endrin, dieldrin, endosulfan, and methoxychlor), used for the prevention of pests in coffee crops, and endosulfan sulfate-an endosulfan metabolite-were selected for this study as model compounds for evaluating the sorbent performance of the synthesized materials in the MEPS device. The cycles of each of the stages were previously optimized through univariate experiments to carry out the extraction. The ILz/Si@GO phase was compared to other sorbents used in MEPS (GO, DVB-MMA, C4/SiO2, C8/SiO2, ILz/SiO2, and bare silica) and also with graphene functionalized through other methodologies, where ILz/Si@GO showed the best results. The material was characterized using a range of techniques. The selectivity of the sorbent material and its adsorption capacity were evaluated by gas chromatography coupled with tandem mass spectrometry. The precision and accuracy of the method showed a relative standard deviation lower than 10% and recoveries from 35 to 97%. Finally, the proposed method was employed for the determination of pesticide residues in coffee samples.

Keywords: Coffee samples; GC–MS/MS; Graphene oxide (GO); Ionic liquids (ILs); Microextraction by packed sorbent (MEPS); Pesticides.

MeSH terms

  • Coffee
  • Gas Chromatography-Mass Spectrometry
  • Graphite* / chemistry
  • Ionic Liquids* / analysis
  • Limit of Detection
  • Pesticides* / analysis
  • Silicon Dioxide / chemistry
  • Solid Phase Microextraction / methods

Substances

  • Coffee
  • Ionic Liquids
  • Pesticides
  • Silicon Dioxide
  • Graphite