International Iberian Nanotechnology Laboratory (INL), Av. Mestre José Veiga, 4715-330 Braga, Portugal.
Nanoscale. 2019 Mar 28;11(13):6072-6079. doi: 10.1039/c9nr00388f.
A novel procedure for the preparation of magnetic covalent organic frameworks (COFs) is reported. In situ functionalization of Fe3O4 with dopamine rapidly afforded amino-functionalized magnetic nanoparticles, which after decoration with a COF building block and subsequent COF growth gave access to magnetic composite mTpBD-Me2. The optimized synthesis conditions yielded crystalline and superparamagnetic material with no loss in surface area as compared to bulk COF. The composite material was employed for the first time in magnetic solid-phase extraction of marine biotoxins from seawater with high efficiency, where calculated maximum adsorption capacities of 812 mg g-1 and 830 mg g-1 were found for okadaic acid (OA) and dinophysistoxin-1 (DTX-1), respectively, corresponding to an increase of ∼500-fold for OA and ∼300-fold for DTX-1 as compared to the commonly used non-magnetic macroporous resins. Nearly quantitative desorption efficiency of both biotoxins was obtained using 2-propanol as solvent, rendering the composite materials recyclable with merely minor losses in adsorption capacity after five consecutive cycles of adsorption/desorption. In addition, retention of crystallinity after the adsorption cycles highlights the stability of the composite in seawater. These results illustrate the great efficiency of the novel material in biotoxin adsorption and show great promise for its application in environmental monitoring programs.
一种用于制备磁性共价有机框架(COFs)的新方法被报道。Fe3O4 与多巴胺的原位功能化迅速提供了氨基功能化的磁性纳米粒子,这些粒子经过 COF 构建块的修饰和随后的 COF 生长,得到了磁性复合 mTpBD-Me2。优化的合成条件得到了结晶和超顺磁性材料,与体相 COF 相比,其比表面积没有损失。该复合材料首次被用于从海水中高效地磁性固相萃取海洋生物毒素,对于 okadaic 酸(OA)和 dinophysistoxin-1(DTX-1),分别计算出的最大吸附容量为 812 mg g-1和 830 mg g-1,与常用的非磁性大孔树脂相比,OA 的吸附容量增加了约 500 倍,DTX-1 的吸附容量增加了约 300 倍。使用 2-丙醇作为溶剂,可以获得两种生物毒素的近乎定量的解吸效率,使得复合材料在经过五次吸附/解吸循环后,仅略有损失吸附容量即可回收利用。此外,在吸附循环后保留结晶度突出了该复合材料在海水中的稳定性。这些结果说明了该新型材料在生物毒素吸附方面的高效率,并展示了其在环境监测计划中的应用的巨大潜力。