College of Resources and Environment, Key Laboratory of Straw Comprehensive Utilization and Black Soil Conservation, Ministry of Education, Jilin Agricultural University, Changchun 130118, China.
Jilin Guangxin Engineering Technology Consulting Co., Ltd., Changchun 130022, China.
Int J Mol Sci. 2022 May 20;23(10):5758. doi: 10.3390/ijms23105758.
Computer simulations are widely used for the selection of conditions for the synthesis of molecularly imprinted polymers and can rapidly reduce the experimental cycle time and save labor and materials. In this paper, estrone molecularly imprinted polymers (E1-MIPs) are designed at the M062X/6-311+G(,) level with itaconic acid (IA) as the functional monomer. The imprinted molar ratio between E1 and IA was optimized, cross-linkers and solvents were screened, and the nature of interactions between E1 and IA was explored. The simulated results showed that pentaerythritol triacrylate was the best cross-linker. Meanwhile, when the imprinted molar ratio between E1 and IA was 1:4, the E1-IA complex had the largest amount of hydrogen bonds, the lowest binding energy, and the strongest stability. Using the simulation results as guidance, the E1-MIPs were prepared to modify the electrons of a quartz crystal microbalance (QCM) sensor. The experimental studies showed that the E1-MIPs-QCM sensor had the highest adsorption capacity to E1 in comparison with their analogues, and the lowest detection value of the sensor was 16.00 μg/L. The computer simulations and experimental studies could provide guidance for synthesize novel E1-MIPs materials. It also could provide important references and directions for the application of E1-MIPs.
计算机模拟广泛用于选择分子印迹聚合物合成的条件,可以快速减少实验周期并节省人力和材料。本文在 M062X/6-311+G(,) 水平上以衣康酸 (IA) 为功能单体设计了雌酮分子印迹聚合物 (E1-MIPs)。优化了 E1 与 IA 的印迹摩尔比,筛选了交联剂和溶剂,并探讨了 E1 与 IA 之间的相互作用性质。模拟结果表明,季戊四醇三丙烯酸酯是最佳的交联剂。同时,当 E1 与 IA 的印迹摩尔比为 1:4 时,E1-IA 复合物具有最大的氢键数量、最低的结合能和最强的稳定性。利用模拟结果作为指导,制备了 E1-MIPs 来修饰石英晶体微天平 (QCM) 传感器的电子。实验研究表明,与类似物相比,E1-MIPs-QCM 传感器对 E1 的吸附容量最高,传感器的最低检测值为 16.00 μg/L。计算机模拟和实验研究可为合成新型 E1-MIPs 材料提供指导。同时,也可为 E1-MIPs 的应用提供重要的参考和方向。