Department of Analytical Chemistry, China Pharmaceutical University, Nanjing 211198, China.
Department of Analytical Chemistry, China Pharmaceutical University, Nanjing 211198, China; Key Laboratory of Biomedical Functional Materials, China Pharmaceutical University, Nanjing 211198, China; Key Laboratory of Drug Quality Control and Pharmacovigilance, Ministry of Education, China Pharmaceutical University, Nanjing 211198, China.
Food Chem. 2022 Jul 1;381:132275. doi: 10.1016/j.foodchem.2022.132275. Epub 2022 Jan 31.
In this work, with the attempt to further improve the selectivity, magnetism and loading proportion of existing adsorbents, a novel composite (MGO/MHNTs@MIPs) was synthesized by electrostatically combining molecularly imprinted polymer based on the surface of magnetic halloysite nanotubes (MHNTs@MIPs) with magnetic graphene oxide (MGO). Then some characterizations were done to prove its successful synthesis. Besides, the bonding experiment showed that it possessed a loading capacity of up to 132 mg·g, and the adsorption behavior of MGO/MHNTs@MIPs was elucidated by Langmuir isotherm model and Pseudo-second order model. By comparing its adsorption capacity to analogues, we concluded that the MGO/MHNTs@MIPs with the MHNTs@MIPs as basic elements exhibited higher selectivity (imprinting factor = 2.25) than that of MGO/MHNTs@NIPs based on MHNTs@NIPs for template rutin. Furthermore, a series of solid phase extraction conditions were optimized, and then the materials were used for the extraction and detection of rutin in fruit juice under the optimal conditions.
在这项工作中,我们试图进一步提高现有吸附剂的选择性、磁性和负载比例,通过静电结合的方法合成了一种新型复合材料(MGO/MHNTs@MIPs),即在磁性海泡石纳米管(MHNTs@MIPs)表面结合基于分子印迹的聚合物,得到磁性氧化石墨烯(MGO)。然后,我们进行了一些表征来证明其成功合成。此外,结合实验表明它具有高达 132mg·g 的负载能力,并且通过 Langmuir 等温模型和拟二级模型来阐述 MGO/MHNTs@MIPs 的吸附行为。通过与类似物的吸附容量进行比较,我们得出结论,以 MHNTs@MIPs 为基本元素的 MGO/MHNTs@MIPs 比以 MHNTs@NIPs 为基本元素的 MGO/MHNTs@NIPs 对模板芦丁具有更高的选择性(印迹因子=2.25)。此外,优化了一系列固相萃取条件,然后在最佳条件下将材料用于果汁中芦丁的提取和检测。