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Magnetic Porous Molecularly Imprinted Polymers Based on Surface Precipitation Polymerization and Mesoporous SiO2 Layer as Sacrificial Support for Efficient and Selective Extraction and Determination of Chlorogenic Acid in Duzhong Brick Tea

机译:基于表面沉淀聚合和介孔SiO2层的磁性多孔分子印迹聚合物作为有效支持物选择性提取和测定杜中砖茶中绿原酸的牺牲载体

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摘要

Magnetic porous molecularly imprinted polymers (MPMIPs) for rapid and efficient selective recognition of chlorogenic acid (CGA) were effectively prepared based on surface precipitation polymerization using CGA as template, 4-vinylpyridine (4-VP) as functional monomer, and mesoporous SiO2 (mSiO2) layer as sacrificial support. A computational simulation by evaluation of electronic binding energy is used to optimize the stoichiometric ratio between CGA and 4-VP (1:5), which reduced the duration of laboratory trials. The porous MIP shell and the rid of solid MIPs by magnet gave MPMIPs high binding capacity (42.22 mg/g) and fast kinetic binding (35 min). Adsorption behavior between CGA and MPMIPs followed Langmuir equation and pseudo-first-order reaction kinetics. Furthermore, the obtained MPMIPs as solid phase adsorbents coupled with high performance liquid chromatography (HPLC) were employed for selective extraction and determination of CGA (2.93 ± 0.11 mg/g) in Duzhong brick tea. The recoveries from 91.8% to 104.2%, and the limit of detection (LOD) at 0.8 μg/mL were obtained. The linear range (2.0–150.0 μg/mL) was wide with R2 > 0.999. Overall, this study provided an efficient approach for fabrication of well-constructed MPMIPs for fast and selective recognition and determination of CGA from complex samples.
机译:以CGA为模板,以4-乙烯基吡啶(4-VP)为功能单体,以介孔SiO2(mSiO2)为基体,采用表面沉淀聚合法,有效制备了可快速有效地选择性识别绿原酸(CGA)的磁性多孔分子印迹聚合物(MPMIPs)。 )层作为牺牲支持。通过评估电子结合能进行的计算模拟可优化CGA和4-VP(1:5)之间的化学计量比,从而缩短了实验室试验的时间。多孔的MIP外壳和磁体去除了固体MIP,使MPMIP具有高的结合能力(42.22 mg / g)和快速的动力学结合(35分钟)。 CGA和MPMIP之间的吸附行为遵循Langmuir方程和拟一级反应动力学。此外,将获得的作为固相吸附剂的MPMIPs与高效液相色谱(HPLC)结合用于选择性提取和测定都忠砖茶中的CGA(2.93±0.11 mg / g)。回收率从91.8%至104.2%,检出限(LOD)为0.8μg/ mL。线性范围(2.0–150.0μg/ mL)较宽,R 2

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