Abstract

Compounds with strong intramolecular hydrogen bonds (e.g., salicylic acid) have weak intermolecular hydrogen bonding interactions between them and functional monomers in the imprinting process. Consequently, the corresponding molecularly imprinted polymers (MIPs) have no specific adsorption ability. Here, the first magnetic dummy MIPs (MDMIPs) based on benzonic acid as dummy template are successfully developed and evaluated with respect to the applications in selective enrichment and analysis of salicylic acid from complex mixtures. Various parameters affecting absorption/desorption were evaluated for achieving optimal recovery and reducing nonspecific interactions. The prepared MDMIPs showed high adsorption capacity, good selectivity, rapid kinetic binding (40min) and magnetic separation (5s), high reproducibility (RSD< 4% for batch-to-batch evaluation), and stability (only 4% decrease after 6cycles). Owing to the efficacy in specific binding and removal of interference, trace level salicylic acid was quantified (0.2μg/g of fresh mass) in Actinidia chinensis by high-performance liquid chromatography.

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