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◆ Talanta2026-08-03

A molecularly imprinted electrochemical aptasensor based on graphene and tin dioxide composite with electrodeposited gold nanoparticles for dual recognition of enrofloxacin.

Ying Wang, Shanshan Fu, Zhengyuan Dai, Yinuo Liu, Xiaoyu Yang, Li Li, Yaping Ding

原始摘要(英文原文)· Original abstract
In this work, a molecularly imprinted electrochemical aptamer sensor (MIEAS) for the detection of enrofloxacin (ENR) was developed using SnO2-graphene (SnO2-Gr) and gold nanoparticles (AuNPs) as electrode modification materials. The SnO2-Gr composite material has a large specific surface area and can enhance the conductivity of the sensing platform. The aptamer, serving as a biofunctional monomer, was immobilized on the electrode surface via Au-S bonds. Using ENR as the template molecule and nicotinamide (NA) as the chemical functional monomer, a molecularly imprinted polymer (MIP) film was prepared by electropolymerization. Benefiting from the synergistic effect of MIP and aptamer, this MIEAS exhibits a good linear relationship with ENR in the range of 10-14 to 10-5 M, and the detection limit is as low as 1.65 × 10-15 M. Satisfactory recovery was obtained in milk and environmental water samples, indicating the potential for application in food and environmental analysis.
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A molecularly imprinted electrochemical aptasensor based on graphene and tin dioxide composite with electrodeposited gold nanoparticles for dual recognition of enrofloxacin. — 科研速览 Science Skim