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基于铁基金属有机骨架负载葡萄糖的磁性多孔碳用于饮料中合成有机染料的有效提取。

Magnetic porous carbons derived from iron-based metal-organic framework loaded with glucose for effective extraction of synthetic organic dyes in drinks.

机构信息

Department of Analytical Chemistry, Jilin Institute of Chemical Technology, No. 45 Chengde, Jilin 132022, China.

Department of Analytical Chemistry, Jilin Institute of Chemical Technology, No. 45 Chengde, Jilin 132022, China.

出版信息

J Chromatogr A. 2022 Jan 4;1661:462716. doi: 10.1016/j.chroma.2021.462716. Epub 2021 Nov 28.

DOI:10.1016/j.chroma.2021.462716
PMID:34879309
Abstract

The conversion of metal-organic frameworks (MOFs) to porous carbon has attracted extensive attention for developing multifunctional adsorbent materials. Herein, we demonstrated a facile method to prepare magnetic porous carbon via calcinating MIL-101(Fe) precursor loaded with glucose at 700 °C in an N atmosphere. The obtained magnetic porous carbon (MPCG) contained plenty of oxygen-containing functional groups and exhibited an enlarged specific surface area (177.7 m/g) compared with its precursor (41.2 m/g). In addition, MPCG can be easily separated from the matrix by a magnet. Benefitting from these advantages, the magnetic porous carbon exhibited high affinity toward four synthetic organic dyes (amaranth, ponceau 4R, sunset yellow, and lemon yellow) in an aqueous solution. Moreover, the adsorbent can be applied to quantitatively detect synthetic organic dyes in drinks coupled with chromatography. A new magnetic solid-phase extraction method for dye analysis yielded reasonable linearity (r □ 0.99), low limits of detection (0.047-0.076 μg/L), and good precision within the analyte concentration range of 0.25-50 μg/L.

摘要

将金属-有机骨架(MOFs)转化为多孔碳已引起广泛关注,以开发多功能吸附剂材料。在此,我们展示了一种通过在 N 气氛中于 700°C 煅烧负载葡萄糖的 MIL-101(Fe)前体制备磁性多孔碳的简便方法。所得到的磁性多孔碳(MPCG)含有大量含氧官能团,与前体(41.2 m/g)相比,其比表面积增大(177.7 m/g)。此外,MPCG 可以通过磁铁从基质中轻易分离。得益于这些优点,磁性多孔碳在水溶液中对四种合成有机染料(苋菜红、丽春红 4R、日落黄和柠檬黄)具有高亲和力。此外,该吸附剂可用于与色谱法联用定量检测饮料中的合成有机染料。用于染料分析的新型磁性固相萃取方法在分析物浓度范围为 0.25-50 μg/L 时具有合理的线性(r□0.99)、低检测限(0.047-0.076 μg/L)和良好的精密度。

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