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Molecular imprinting: perspectives and applications

Chemical Society Reviews · 2016 · Vol. 45(8) · pp. 2137–2211
Lingxin ChenXiaoyan WangWenhui LüXiaqing WuJinhua Li

Abstract

Molecular imprinting technology (MIT), often described as a method of making a molecular lock to match a molecular key, is a technique for the creation of molecularly imprinted polymers (MIPs) with tailor-made binding sites complementary to the template molecules in shape, size and functional groups. Owing to their unique features of structure predictability, recognition specificity and application universality, MIPs have found a wide range of applications in various fields. Herein, we propose to comprehensively review the recent advances in molecular imprinting including versatile perspectives and applications, concerning novel preparation technologies and strategies of MIT, and highlight the applications of MIPs. The fundamentals of MIPs involving essential elements, preparation procedures and characterization methods are briefly outlined. Smart MIT for MIPs is especially highlighted including ingenious MIT (surface imprinting, nanoimprinting, etc.), special strategies of MIT (dummy imprinting, segment imprinting, etc.) and stimuli-responsive MIT (single/dual/multi-responsive technology). By virtue of smart MIT, new formatted MIPs gain popularity for versatile applications, including sample pretreatment/chromatographic separation (solid phase extraction, monolithic column chromatography, etc.) and chemical/biological sensing (electrochemical sensing, fluorescence sensing, etc.). Finally, we propose the remaining challenges and future perspectives to accelerate the development of MIT, and to utilize it for further developing versatile MIPs with a wide range of applications (650 references).

Analytical chemistry methods developmentNanofabrication and Lithography TechniquesAdvanced biosensing and bioanalysis techniquesImprinting (psychology)Molecular imprintingNanotechnologyChemistryMaterials scienceCatalysisOrganic chemistrySelectivityGene

Funding

  • National Natural Science Foundation of China
  • Chinese Academy of Sciences
Citations
2,328
FWCI
174.07
field-weighted impact
References
642
Percentile
100%
vs. same field & year
Citations per year
References
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