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Reference type: Journal
Authors: Liang Y, Wang HM, Xu YX, Pan HZ, Guo KY, Zhang Y, Chen YQ, Liu DZ, Zhang Y, Yao CX, Yu YY, Shi GY
Article Title: A novel molecularly imprinted polymer composite based on polyaniline nanoparticles as sensitive sensors for parathion detection in the field.
Publication date: 2022
Journal: Food Control
Volume: 133
Article Number: 108638.
DOI: 10.1016/j.foodcont.2021.108638
Alternative URL: https://www.sciencedirect.com/science/article/pii/S0956713521007763

Abstract: This paper presents a novel strategy for the real-time detection of organophosphate pesticides by imprinting parathion molecules at the surface of conductive functional polyaniline nanoparticles (PANIs). It has been demonstrated that the introduction of vinyl group on the surface of PANIs is not only beneficial to the selectivity of imprinting polymerization, but also to the preconcentration of parathion template into the polymer by charge attraction between the template and the functionalized PANIs. Through the above two effects, parathion imprinted polymer was successfully prepared on the surface of PANIs. When the novel material was used to detect parathion in vegetable samples, its selectivity coefficient was observed to be nearly ten times than that of its non-imprinted counterpart. It also possessed high selectivity toward parathion in comparison to structurally similar pesticide compounds. There was a linear relationship between the reductive peak current and parathion concentrations from testing concentrations ranging from between 3.40 × 10-8 M to 1.87 × 10-5 M with a detection limit of 1.13 × 10-8 M (S/N = 3). These results indicate that the newly developed sensor is highly effective for the detection of parathion, and establish the potential of the molecular imprinting approach for future analysis of other organophosphate pesticides
Template and target information: parathion
Author keywords: Polyaniline nanoparticles, Molecularly imprinted polymers, Parathion, electrochemical detection


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