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Nanomoulding of Functional Materials, a Versatile Complementary Pattern Replication Method to Nanoimprinting
Published on: January 23, 2013
Deep eutectic solvents in molecularly imprinted materials: a comprehensive review of functional roles and recent
Dongdong Cheng1, Xin Wang1, Jia Li1
1Key Laboratory of Environment-Friendly Composite Materials of the State Ethnic Affairs Commission, Gansu Province Engineering Research Center for Biomass Functional Composite Materials, Key Laboratory for the Utilization of Environment-Friendly Composite Materials and Biomass in Universities of Gansu Province, Gansu Province Research Center for Basic Sciences of Surface and Interface Chemistry, Chemical Engineering Institute, Northwest Minzu University, Lanzhou 730000, China. lj5458325@126.com.
Abstract:
This review discusses a systematic integration of deep eutectic solvents (DESs) into molecular imprinting, establishing DES-based molecularly imprinted polymers (DES-MIPs) as an emerging class of green affinity materials. The present review emphasizes the diverse functional roles of DESs in the synthesis of MIPs, as well as the reaction mechanisms of their components, hydrogen bond acceptors (HBAs) and hydrogen bond donors (HBDs). It systematically covers the fundamental principles of molecular imprinting, highlighting the advantages and mechanisms of DES-based imprinting over traditional MIP approaches, such as the ability of DESs to act as functional monomers for polymerization, templates to guide imprint site formation, porogens for the regulation of polymer pore structures, and eluents for the efficient removal of templates. Furthermore, the specific applications of DES-based MIPs in food safety, environmental monitoring, and biomedical analysis are described, and future perspectives for this field are discussed.
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