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基于分子印迹磁性共价有机框架的高效纳米复合材料,用于从液体基质中选择性提取双酚 A。

Highly efficient nanocomposites based on molecularly imprinted magnetic covalent organic frameworks for selective extraction of bisphenol A from liquid matrices.

机构信息

College of Public Health and Management, Wenzhou Medical University, Wenzhou, 325035, China.

Chongqing Jiangbei Center for Disease Control and Prevention, Chongqing, 400000, China.

出版信息

Mikrochim Acta. 2023 May 4;190(5):200. doi: 10.1007/s00604-023-05778-z.

DOI:10.1007/s00604-023-05778-z
PMID:37140689
Abstract

Highly efficient nanocomposites, hydrophobic molecularly imprinted magnetic covalent organic frameworks (MI-MCOF), have been farbricated by a facile Schiff-base reaction. The MI-MCOF was based on terephthalaldehyde (TPA) and 1,3,5-tris(4-aminophenyl) benzene (TAPB) as functional monomer and crosslinker, anhydrous acetic acid as catalyst, bisphenol AF as dummy template, and NiFeO as magnetic core. This organic framework significantly reduced the time consumption of conventional imprinted polymerization and avoided the use of traditional initiator and cross-linking agents. The synthesized MI-MCOF exhibited superior magnetic responsivity and affinity, as well as high selectivity and kinetics for bisphenol A (BPA) in water and urine samples. The equilibrium adsorption capacity (Q) of BPA on the MI-MCOF was 50.65 mg g, which was 3-7-fold higher than of its three structural analogues. The imprinting factor of BPA reached up to 3.17, and the selective coefficients of three analogues were all > 2.0, evidencing the excellent selectivity of fabricated nanocomposites to BPA. Based on the MI-MCOF nanocomposites, the magnetic solid-phase extraction (MSPE), combined with HPLC and fluorescence detection (HPLC-FLD), offered superior analytical performance: wide linear range of 0.1-100 μg L, high correlation coefficient of 0.9996, low limit of detection of 0.020 μg L, good recoveries of 83.5-110%, and relative standard deviations (RSDs) of 0.5-5.7% in environmental water, beverage, and human urine samples. Consequently, the MI-MCOF-MSPE/HPLC-FLD method provides a good prospect in selective extraction of BPA from complex matrices while replacing traditional magnetic separation and adsorption materials.

摘要

高效纳米复合材料,疏水分子印迹磁性共价有机骨架(MI-MCOF),通过简便的席夫碱反应制备而成。MI-MCOF 以对苯二甲醛(TPA)和 1,3,5-三(4-氨基苯基)苯(TAPB)为功能单体和交联剂,无水乙酸为催化剂,双酚 AF 为虚拟模板,NiFeO 为磁性核。该有机骨架显著减少了传统印迹聚合的时间消耗,并避免了传统引发剂和交联剂的使用。合成的 MI-MCOF 在水和尿液样品中对双酚 A(BPA)表现出优异的磁响应性和亲和力,以及高选择性和动力学。BPA 在 MI-MCOF 上的平衡吸附容量(Q)为 50.65mg g,是其三个结构类似物的 3-7 倍。BPA 的印迹因子高达 3.17,三个类似物的选择性系数均>2.0,证明了制备的纳米复合材料对 BPA 具有优异的选择性。基于 MI-MCOF 纳米复合材料,磁固相萃取(MSPE)与 HPLC 和荧光检测(HPLC-FLD)相结合,提供了优异的分析性能:0.1-100μg L 的宽线性范围,高相关系数为 0.9996,检测限低至 0.020μg L,环境水样、饮料和人尿样的回收率为 83.5-110%,相对标准偏差(RSD)为 0.5-5.7%。因此,MI-MCOF-MSPE/HPLC-FLD 方法在取代传统磁性分离和吸附材料的情况下,为从复杂基质中选择性提取 BPA 提供了良好的前景。

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