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Article

Development of a New Electrochemical Sensor Based on Molecularly Imprinted Biopolymer for Determination of 4,4′-Methylene Diphenyl Diamine

1
DeFENS, Department of Food, Environmental, and Nutritional Sciences, Food Packaging Lab., University of Milan, via Celoria 2—I, 20133 Milan, Italy
2
Department of Food Engineering, Faculty of Engineering, Izmir Institute of Technology, Gülbahçe Köyü, Urla, Izmir 35430, Turkey
3
INSTM, National Consortium of Materials Science and Technology, Local Unit University of Milan, Via Celoria 2—I, 20133 Milan, Italy
*
Author to whom correspondence should be addressed.
Sensors 2023, 23(1), 46; https://doi.org/10.3390/s23010046
Submission received: 25 November 2022 / Revised: 16 December 2022 / Accepted: 17 December 2022 / Published: 21 December 2022
(This article belongs to the Collection Electrochemical Sensors and Platforms: Design and Application)

Abstract

A new molecularly imprinted electrochemical sensor was proposed to determine 4,4′-methylene diphenyl diamine (MDA) using molecularly imprinted polymer–multiwalled carbon nanotubes modified glassy carbon electrode (MIP/MWCNTs/GCE). GCE was coated by MWCNTs (MWCNTs/GCE) because of their antifouling qualities and in order to improve the sensor sensitivity. To make the whole sensor, a polymeric film made up of chitosan nanoparticles was electrodeposited by the cyclic voltammetry method on the surface of MWCNTs/GCE in the presence of MDA as a template. Different parameters such as scan cycles, elution time, incubation time, molar ratio of template molecules to functional monomers, and pH were optimized to increase the performance of the MIP sensor. With a detection limit of 15 nM, a linear response to MDA was seen in the concentration range of 0.5–100 µM. The imprinting factor (IF) of the proposed sensor was also calculated at around 3.66, demonstrating the extremely high recognition performance of a MIP/MWCNT-modified electrode. Moreover, the sensor exhibited good reproducibility and selectivity. Finally, the proposed sensor was efficiently used to determine MDA in real samples with satisfactory recoveries ranging from 94.10% to 106.76%.
Keywords: 4,4′-methylene diphenyl diamine; primary aromatic amine; electrochemical sensor; chitosan; molecularly imprinted polymer 4,4′-methylene diphenyl diamine; primary aromatic amine; electrochemical sensor; chitosan; molecularly imprinted polymer

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MDPI and ACS Style

Ghaani, M.; Büyüktaş, D.; Carullo, D.; Farris, S. Development of a New Electrochemical Sensor Based on Molecularly Imprinted Biopolymer for Determination of 4,4′-Methylene Diphenyl Diamine. Sensors 2023, 23, 46. https://doi.org/10.3390/s23010046

AMA Style

Ghaani M, Büyüktaş D, Carullo D, Farris S. Development of a New Electrochemical Sensor Based on Molecularly Imprinted Biopolymer for Determination of 4,4′-Methylene Diphenyl Diamine. Sensors. 2023; 23(1):46. https://doi.org/10.3390/s23010046

Chicago/Turabian Style

Ghaani, Masoud, Duygu Büyüktaş, Daniele Carullo, and Stefano Farris. 2023. "Development of a New Electrochemical Sensor Based on Molecularly Imprinted Biopolymer for Determination of 4,4′-Methylene Diphenyl Diamine" Sensors 23, no. 1: 46. https://doi.org/10.3390/s23010046

APA Style

Ghaani, M., Büyüktaş, D., Carullo, D., & Farris, S. (2023). Development of a New Electrochemical Sensor Based on Molecularly Imprinted Biopolymer for Determination of 4,4′-Methylene Diphenyl Diamine. Sensors, 23(1), 46. https://doi.org/10.3390/s23010046

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