4.6 Article

Molecularly imprinted polyaniline-ferrocene-sulfonic acid-Carbon dots modified pencil graphite electrodes for chiral selective sensing of D-Ascorbic acid and L-Ascorbic acid: A clinical biomarker for preeclampsia

Journal

ELECTROCHIMICA ACTA
Volume 182, Issue -, Pages 917-928

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.electacta.2015.10.005

Keywords

D-/L-ascorbic acid; Electropolymerization; C-dots; Doping-dedoping; poly(aniline-ferrocenesulfonic acid)

Funding

  1. Dr. D. S. Kothari post doctoral fellowship, University Grants Commission, New Delhi, India
  2. Indian Institute of Technology, Kanpur, India [MHRD/MATH/2014048]

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A simple and novel method is proposed for chiral separation of L-ascorbic acid and D-ascorbic acid in human cerebrospinal fluids and blood plasma samples. Electro-polymerized molecularly imprinted polyaniline ferrocenesulfonic acid-C-dots modified pencil graphite electrodes was successfully applied for separation and quantification of D-/L-ascorbic acid in aqueous and some biological samples. Parameters, important to control the performance of the electrochemical sensor were investigated and optimized, including the effects of pH, monomer-template ratios, electropolymerization cycles and scan rates. The molecularly imprinted film exhibited a high chiral selectivity and sensitivity towards D-ascorbic acid and L-ascorbic acid respectively. The surface morphologies and electrochemical properties of the proposed sensor were characterized by scanning electron microscopy, cyclic voltammetry, difference pulse voltammetry, chrono-amperometry and electrochemical impedance spectroscopy. L-ascorbic acid selective sensor shows excellent selectivity towards the L-ascorbic acid in comparison to D-ascorbic acid vice versa for D-ascorbic acid selective sensor. Under optimal conditions the linear range of the calibration curve for L-ascorbic acid and D-ascorbic acid was 6.0-165.0 nM and 6.0-155.0 nM, with the detection limit of 0.001 nM and 0.002 nM. Chiral detection of L-ascorbic acid was successfully carried out in pharmaceuticals and human plasma samples (pregnant women and non pregnant women) via proposed sensor with good selectivity and sensitivity. (C) 2015 Elsevier Ltd. All rights reserved.

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