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Recent advances and future trends in molecularly imprinted polymers-based sample preparation
Myriam Díaz-Álvarez1, Esther Turiel1, Antonio Martín-Esteban1
1Departamento de Medio Ambiente y Agronomía, INIA, CSIC, Madrid, Spain.
Journal of Separation Science
|April 18, 2023
Summary
Molecularly imprinted polymers (MIPs) offer selective sample preparation but face challenges in aqueous media and mass transfer. This review explores strategies to enhance MIP performance, focusing on green synthesis approaches.
Area of Science:
- Polymer Science
- Analytical Chemistry
- Materials Science
Background:
- Molecular imprinting technology creates polymers with specific binding sites for target molecules.
- Molecularly imprinted polymers (MIPs) are valuable for selective sample preparation in analytical methods.
- Current MIP applications face limitations due to binding site heterogeneity, slow mass transfer, and reduced performance in aqueous media.
Purpose of the Study:
- To review recent advances in MIP-based extraction, focusing on improving mass transfer and recognition in aqueous environments.
- To highlight strategies addressing the limitations of MIPs in sample preparation.
- To examine MIP synthesis from a Green Chemistry perspective.
Main Methods:
- Review of recent literature on molecular imprinting technology and MIP applications.
- Focus on strategies for enhancing analyte diffusion and binding affinity in aqueous solutions.
- Analysis of synthesis methods considering Green Chemistry principles.
Main Results:
- Several strategies have been developed to improve mass transfer kinetics and binding selectivity of MIPs in aqueous media.
- Modified MIP synthesis approaches enhance performance and broaden applicability.
- Green Chemistry principles are increasingly integrated into MIP preparation, reducing environmental impact.
Conclusions:
- Recent advancements have significantly improved the performance of MIPs for sample preparation, particularly in aqueous media.
- Addressing mass transfer and recognition challenges expands the utility of MIPs in analytical chemistry.
- The adoption of Green Chemistry in MIP synthesis aligns with sustainable scientific practices.

