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Updated: Sep 18, 2025

Author Spotlight: Quantification of Aflatoxins and Phytoalexins in Peanut Seeds to Identify Genetic Resistance Against Aspergillus
Published on: April 19, 2024
Highly graphitized carbon with enhanced π-π interactions as efficient solid phase extraction adsorbent for
Qi Yu1, Wentao Yan1, Tao Liu1
1Jiangxi Provincial Key Laboratory of Improved Variety Breeding and Efficient Utilization of Native Tree Species, Key Laboratory of Chemical Utilization of Plant Resources of Nanchang, College of Forestry, Jiangxi Agricultural University, Nanchang 330045, PR China.
Abstract:
Aflatoxin B1 (AFB1) threatens food safety due to its persistence in oils. Carbon-based solid-phase extraction (SPE) methods are effective for detecting AFB1 in aqueous food matrices, but employing it in oils is challenging due to non-polar environments. We developed highly graphitized carbon materials (HGC) with enhanced π-π interactions for AFB1 extraction in oil through a transition metal (Fe, Co, Ni)-assisted carbonization process. Adsorption experiments revealed that FeO/Fe3O4/HGC exhibited a superior AFB1 adsorption capacity of 1179.99 μg g-1, outperforming Ni/Co-HGC and pure carbon by 4-6 times. Density functional theory revealed the electron-deficient graphitized carbon structures supported by magnetic FeO/Fe3O4 clusters enhance π-π interactions with AFB1, with pore filling and hydrophobicity further aiding adsorption. Combining FeO/Fe3O4/HGC-SPE with HPLC-FLD achieved ultra-sensitive AFB1 detection in vegetable oils (2.0 pg g-1 limit). This study provides an effective method for AFB1 detection in vegetable oils, supporting the monitoring and control of contamination to enhance food safety.
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