Journal of New Technology and Materials
Volume 8, Numéro 1, Pages 68-73
2018-07-02
Authors : Betatache Amina . Chateaux Jean-françois . Jaffrezic-renault Nicole .
We report on the deposition of molecularly imprinted polymer (MIP) nanofibers (NFs) by electrospinning and on their potentialities in electrochemical biosensors. Electrospun polymer was the copolymer poly(ethylene-co-vinyl alcohol) denoted EVOH and model imprinted molecule was creatinine. The optimum conditions leading to uniform non-beaded fibers were reported. Infrared spectroscopy was used to establish actual molecular sites creation on the fibers. NF mats deposited on gold electrode were characterized by electrochemical impedance spectroscopy (EIS). The EIS sensor based on creatinine MIP-EVOH NFs (25% of EVOH in DMSO) gave a large linear range for creatinine detection between 1fg/L and 2 mg/L with a low detection limit of 0.015 fg/L. Reproducibility of 1% to 9% on the same sensor, and 1% to 15% from one sensor to another with a very good selectivity for creatinine.
electrospinning; nanofibers; poly(ethylene co-vinyl alcohol); moleculary imprinted polymer; creatinine; electrochemical sensor
Betatache Amina
.
Lagarde Florence
.
Jaffrezic-renault Nicole
.
pages 10-15.
Zeggai Fatima Zohra
.
Otmane Ilyes
.
Zerigui Hafida
.
Chebout Redouane
.
Bachari Khaldoun
.
pages 7-14.
Hana Ferkous
.
pages 36-43.
Djebablia Ikram
.
Guellati Ouanassa
.
Habib Naima
.
Harat Aicha
.
Djefaflia Fahima
.
Nait-merzoug Assia
.
Janowska Izabella
.
Guerioune Mohamed
.
pages 27-34.
Ekrem Mürsel
.
özten ünal
.
şahin ömer
.
pages 33-38.