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A Durable Hydrophobicity Hydrazone Covalent Organic Framework Coating for Solid Phase Microextraction of Polycyclic Aromatic Hydrocarbons in Food and Environmental Sample

Shuhui Huo, Xiaohui Deng, Nan Yang, Mengya Qin, Xiaonan Zhang,Xiaoqiang Yao, Cuixiang An,Pengxin Zhou,Xiaoquan Lu

Chemical engineering journal(2024)

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摘要
In this study, a durable hydrophobicity hydrazone covalent organic framework (BTCH-PTA-COF) has been developed as fiber coating, which was applied to solid-phase microextraction (SPME) of polycyclic aromatic hydrocarbons (PAHs). The hydrophobic and pi-pi packing interactions between BTCH-PTA-COF and PAHs were confirmed by contact angle experiments and Van der Waals surface electrostatic potential analysis. Further, large specific surface area, good chemical and thermal stability have positive promoting effect on extraction. The method of wide linearity (0.25-300 mu g.L- 1), low detection limits (0.03-0.05 mu g.L- 1) and high enrichment factors (767-1411) for the detection of PAHs is explored, coupling BTCH-PTA-COF based SPME with gas chromatography with hydrogen Hame detector (GC-FID). The relative standard deviations (RSDs) for inter-day and intraday extractions of PAHs are ranging from 4.1 % to 9.6 % and 2.9 % to 6.4 %, respectively. The method successfully detected and quantified trace PAHs in tea beverages and river water samples with recoveries from 88.5 % to 104.8 %. The BTCH-PTA-COF coated fiber is ultra-stable in recycled extraction and reused at least 120 times, which could surpass published and commercial SPME fiber.
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关键词
Solid phase microextraction (SPME),Covalent organic frameworks (COFs),Polycyclic aromatic hydrocarbons (PAHs),Density functional theory calculation
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