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Reference type: Journal
Authors: Zhang ZL, Niu DC, Li YS, Shi JL
Article Title: Magnetic, core-shell structured and surface molecularly imprinted polymers for the rapid and selective recognition of salicylic acid from aqueous solutions.
Publication date: 2018
Journal: Applied Surface Science
Volume: 435
Page numbers: 178-186.
DOI: 10.1016/j.apsusc.2017.11.033
Alternative URL: http://www.sciencedirect.com/science/article/pii/S0169433217332701

Abstract: In this work, a novel kind of magnetic, core-shell structured and surface molecularly imprinted polymers (MMIPs) for the recognition of salicylic acid (SA) was facilely synthesized through a surface imprinting and sol-gel polymerization approach. The as-synthesized MMIPs exhibit uniform core-shell structure and favorable magnetic properties with a saturation magnetization of 22.8 emu g-1. The binding experiments demonstrated that MMIPs possessed high binding and specific recognition capacity, as well as fast binding kinetics and phase separation rate. The maximum binding capacity of MMIPs is around 36.8 mg g-1, nearly 6 times that of the magnetic non-imprinted polymers (MNIPs). Moreover, the selectivity experiments show that all the relative selectivity coefficients towards SA over its structure analogs are higher than 18, further indicating the markedly enhanced binding selectivity of MMIPs. Furthermore, the MMIPs were successfully applied for the determination of SA in environmental water samples with the recovery rates ranging from 94.0 to 108.0 %. This strategy may provide a versatile approach for the fabrication of well-defined molecularly imprinted polymers on nanomaterials for the analysis of complicated matrixes
Template and target information: salicylic acid, SA, 2-hydroxybenzoic acid
Author keywords: Surface imprinting strategy, Magnetic, Core-shell, salicylic acid, Environmental water samples


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