van Wissen Gil, Lowdon Joseph W, Cleij Thomas J, Eersels Kasper, van Grinsven Bart
Sensor Engineering Department, Faculty of Science and Engineering, Maastricht University, P.O. Box 616, 6200 MD Maastricht, The Netherlands.
Polymers (Basel). 2025 Apr 14;17(8):1057. doi: 10.3390/polym17081057.
The versatility of molecularly imprinted polymers (MIPs) has led to their integration into applications like biosensing, separation, environmental monitoring, and drug delivery technologies. This diversity of applications has resulted in a plethora of synthesis approaches to precisely tailor the materials' properties to the specific demands. A critical, yet often overlooked, factor in MIP synthesis is the choice of porogen. Porogens play a pivotal role in defining the morphology, surface properties, swelling behavior, and binding efficiencies of the resulting MIPs. While aprotic solvents have traditionally been the standard in molecular imprinting, recent developments have expanded the variety of employed porogens accompanied by notable improvements in MIP performance. Therefore, this review aims to highlight both traditional and emerging types of porogens used in molecular imprinting, their influence on polymer properties and sorption performance, and their application across various sensing and extraction applications.
分子印迹聚合物(MIPs)的多功能性使其被整合到生物传感、分离、环境监测和药物递送技术等应用中。这种多样的应用导致了大量的合成方法,以根据特定需求精确调整材料的性能。MIP合成中一个关键但常被忽视的因素是致孔剂的选择。致孔剂在决定所得MIPs的形态、表面性质、溶胀行为和结合效率方面起着关键作用。虽然非质子溶剂传统上一直是分子印迹的标准,但最近的发展扩大了所用致孔剂的种类,同时MIP性能也有显著提高。因此,本综述旨在突出分子印迹中使用的传统和新型致孔剂类型、它们对聚合物性能和吸附性能的影响,以及它们在各种传感和萃取应用中的应用。